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Gravity and Strings One appealing f
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Gravity and Strings TOMÁS ORTÍN S
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To Marimar, Diego, and Tomás, the
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x Contents 3.1.1 Scalar gravity cou
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xii Contents 8.7.4 Dyons and the DS
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xiv Contents 14.3.2 Open bosonic st
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xvi Contents Appendix A Lie groups,
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Preface String theory has lived for
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Part I Introduction to gravity and
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4 Differential geometry function 1
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6 Differential geometry and on weig
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8 Differential geometry We can also
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10 Differential geometry where ρ
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12 Differential geometry a metric-c
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14 Differential geometry scalar R,
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16 Differential geometry Local GL(d
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18 Differential geometry In the sec
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20 Differential geometry where ω(e
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22 Differential geometry We define
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24 Differential geometry Since ⋆d
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2 Noether’s theorems In the next
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28 Noether’s theorems where x ′
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30 Noether’s theorems First, obse
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32 Noether’s theorems Sometimes i
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34 Noether’s theorems According t
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36 Noether’s theorems which is th
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38 Noether’s theorems Furthermore
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40 Noether’s theorems The Rosenfe
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42 Noether’s theorems is invarian
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44 Noether’s theorems In this way
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46 A perturbative introduction to g
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48 A perturbative introduction to g
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50 A perturbative introduction to g
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52 A perturbative introduction to g
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54 A perturbative introduction to g
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56 A perturbative introduction to g
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58 A perturbative introduction to g
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60 A perturbative introduction to g
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62 A perturbative introduction to g
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64 A perturbative introduction to g
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66 A perturbative introduction to g
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68 A perturbative introduction to g
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70 A perturbative introduction to g
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72 A perturbative introduction to g
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74 A perturbative introduction to g
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76 A perturbative introduction to g
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78 A perturbative introduction to g
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80 A perturbative introduction to g
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82 A perturbative introduction to g
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84 A perturbative introduction to g
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86 A perturbative introduction to g
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88 A perturbative introduction to g
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90 A perturbative introduction to g
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92 A perturbative introduction to g
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94 A perturbative introduction to g
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96 A perturbative introduction to g
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98 A perturbative introduction to g
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100 A perturbative introduction to
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102 A perturbative introduction to
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104 A perturbative introduction to
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106 A perturbative introduction to
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108 A perturbative introduction to
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110 A perturbative introduction to
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112 A perturbative introduction to
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4 Action principles for gravity A m
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116 Action principles for gravity w
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118 Action principles for gravity w
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120 Action principles for gravity T
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122 Action principles for gravity a
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124 Action principles for gravity F
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126 Action principles for gravity s
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128 Action principles for gravity t
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130 Action principles for gravity a
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132 Action principles for gravity i
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134 Action principles for gravity f
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136 Action principles for gravity w
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138 Action principles for gravity W
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140 Action principles for gravity T
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142 Action principles for gravity t
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144 Action principles for gravity W
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146 Action principles for gravity T
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148 Action principles for gravity T
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5 N = 1, 2, d = 4 supergravities In
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152 N = 1, 2, d = 4 supergravities
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154 N = 1, 2, d = 4 supergravities
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156 N = 1, 2, d = 4 supergravities
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158 N = 1, 2, d = 4 supergravities
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160 N = 1, 2, d = 4 supergravities
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162 N = 1, 2, d = 4 supergravities
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164 N = 1, 2, d = 4 supergravities
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166 N = 1, 2, d = 4 supergravities
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168 N = 1, 2, d = 4 supergravities
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170 N = 1, 2, d = 4 supergravities
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172 Conserved charges in general re
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174 Conserved charges in general re
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176 Conserved charges in general re
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178 Conserved charges in general re
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180 Conserved charges in general re
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182 Conserved charges in general re
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Part II Gravitating point-particles
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188 The Schwarzschild black hole Th
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190 The Schwarzschild black hole st
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192 The Schwarzschild black hole V
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194 The Schwarzschild black hole I
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196 The Schwarzschild black hole by
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198 The Schwarzschild black hole 14
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200 The Schwarzschild black hole an
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202 The Schwarzschild black hole Th
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204 The Schwarzschild black hole T
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206 The Schwarzschild black hole C
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208 The Schwarzschild black hole As
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210 The Schwarzschild black hole ne
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212 The Schwarzschild black hole Th
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214 The Reissner-Nordström black h
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216 The Reissner-Nordström black h
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218 The Reissner-Nordström black h
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220 The Reissner-Nordström black h
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222 The Reissner-Nordström black h
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224 The Reissner-Nordström black h
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226 The Reissner-Nordström black h
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228 The Reissner-Nordström black h
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230 The Reissner-Nordström black h
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232 The Reissner-Nordström black h
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234 The Reissner-Nordström black h
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236 The Reissner-Nordström black h
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238 The Reissner-Nordström black h
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240 The Reissner-Nordström black h
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242 The Reissner-Nordström black h
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244 The Reissner-Nordström black h
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246 The Reissner-Nordström black h
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248 The Reissner-Nordström black h
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250 The Reissner-Nordström black h
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252 The Reissner-Nordström black h
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254 The Reissner-Nordström black h
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256 The Reissner-Nordström black h
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258 The Reissner-Nordström black h
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260 The Reissner-Nordström black h
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262 The Reissner-Nordström black h
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264 The Reissner-Nordström black h
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266 The Reissner-Nordström black h
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268 The Taub-NUT solution The charg
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270 The Taub-NUT solution 4. This m
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272 The Taub-NUT solution This solu
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274 The Taub-NUT solution Four-dime
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276 The Taub-NUT solution become th
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278 The Taub-NUT solution All Ricci
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280 The Taub-NUT solution The elect
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10 Gravitational pp-waves As we saw
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284 Gravitational pp-waves The Heis
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286 Gravitational pp-waves The spec
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288 Gravitational pp-waves The equa
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11 The Kaluza-Klein black hole Kalu
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292 The Kaluza-Klein black hole Spa
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294 The Kaluza-Klein black hole Tab
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296 The Kaluza-Klein black hole The
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298 The Kaluza-Klein black hole whi
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300 The Kaluza-Klein black hole As
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302 The Kaluza-Klein black hole The
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304 The Kaluza-Klein black hole dim
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306 The Kaluza-Klein black hole We
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308 The Kaluza-Klein black hole Wha
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310 The Kaluza-Klein black hole and
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312 The Kaluza-Klein black hole the
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314 The Kaluza-Klein black hole KK
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316 The Kaluza-Klein black hole SUG
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318 The Kaluza-Klein black hole ˆd
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320 The Kaluza-Klein black hole whi
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322 The Kaluza-Klein black hole and
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324 The Kaluza-Klein black hole and
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326 The Kaluza-Klein black hole gen
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328 The Kaluza-Klein black hole Low
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330 The Kaluza-Klein black hole The
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332 The Kaluza-Klein black hole has
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334 The Kaluza-Klein black hole whe
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336 The Kaluza-Klein black hole ω1
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338 The Kaluza-Klein black hole com
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340 The Kaluza-Klein black hole The
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342 The Kaluza-Klein black hole whe
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344 The Kaluza-Klein black hole m
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346 The Kaluza-Klein black hole It
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348 The Kaluza-Klein black hole 11.
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350 Dilaton and dilaton/axion black
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352 Dilaton and dilaton/axion black
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354 Dilaton and dilaton/axion black
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356 Dilaton and dilaton/axion black
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358 Dilaton and dilaton/axion black
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360 Dilaton and dilaton/axion black
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362 Dilaton and dilaton/axion black
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364 Dilaton and dilaton/axion black
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366 Dilaton and dilaton/axion black
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368 Dilaton and dilaton/axion black
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370 Unbroken supersymmetry theories
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372 Unbroken supersymmetry conserve
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374 Unbroken supersymmetry infinite
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376 Unbroken supersymmetry ν1··
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378 Unbroken supersymmetry transfor
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380 Unbroken supersymmetry The Kill
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382 Unbroken supersymmetry and, usi
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384 Unbroken supersymmetry In this
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386 Unbroken supersymmetry The dual
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388 Unbroken supersymmetry To calcu
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390 Unbroken supersymmetry The supe
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392 Unbroken supersymmetry transfor
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394 Unbroken supersymmetry AdS 2 ¥
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396 Unbroken supersymmetry precisel
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398 Unbroken supersymmetry and prov
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400 Unbroken supersymmetry Observe
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Part III Gravitating extended objec
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406 String theory String Theory Sol
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408 String theory modes behave unde
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410 String theory γij. The so-call
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412 String theory This term does no
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414 String theory where ˜Diɛ = (
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416 String theory Table 14.1. A bra
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418 String theory multiplets charac
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420 String theory Observe that the
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422 String theory Table 14.2. In th
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424 String theory 14.2.3 D-Branes a
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426 String theory 14.3 Compactifica
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428 String theory This description
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15 The string effective action and
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432 The string effective action and
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434 The string effective action and
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436 The string effective action and
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438 The string effective action and
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440 The string effective action and
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442 The string effective action and
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444 The string effective action and
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446 The string effective action and
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448 From eleven to four dimensions
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450 From eleven to four dimensions
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452 From eleven to four dimensions
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454 From eleven to four dimensions
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456 From eleven to four dimensions
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458 From eleven to four dimensions
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460 From eleven to four dimensions
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462 From eleven to four dimensions
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464 From eleven to four dimensions
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466 From eleven to four dimensions
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468 From eleven to four dimensions
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470 From eleven to four dimensions
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472 From eleven to four dimensions
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474 From eleven to four dimensions
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476 From eleven to four dimensions
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478 From eleven to four dimensions
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480 From eleven to four dimensions
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482 From eleven to four dimensions
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484 From eleven to four dimensions
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486 The type-IIB superstring and ty
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488 The type-IIB superstring and ty
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490 The type-IIB superstring and ty
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492 The type-IIB superstring and ty
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494 The type-IIB superstring and ty
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496 The type-IIB superstring and ty
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498 The type-IIB superstring and ty
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18 Extended objects Introduction In
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502 Extended objects spacetime, S (
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504 Extended objects Let us assume
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506 Extended objects 18.1.2 Charged
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508 Extended objects Fig. 18.1. Ope
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510 Extended objects We have introd
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512 Extended objects Their mass is
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514 Extended objects p-brane soluti
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516 Extended objects In general, th
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518 Extended objects The equations
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19 The extended objects of string t
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522 The extended objects of string
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524 The extended objects of string
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526 The extended objects of string
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528 The extended objects of string
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530 The extended objects of string
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532 The extended objects of string
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534 The extended objects of string
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536 The extended objects of string
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538 The extended objects of string
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540 The extended objects of string
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542 The extended objects of string
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544 The extended objects of string
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546 The extended objects of string
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548 The extended objects of string
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550 The extended objects of string
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M2 M5 d = 11 KK7 KK9 WM D8 D6 D2 D4
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554 The extended objects of string
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556 The extended objects of string
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558 The extended objects of string
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560 The extended objects of string
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562 The extended objects of string
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564 The extended objects of string
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566 The extended objects of string
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568 The extended objects of string
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570 The extended objects of string
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572 The extended objects of string
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574 String black holes in four and
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576 String black holes in four and
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578 String black holes in four and
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580 String black holes in four and
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582 String black holes in four and
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584 String black holes in four and
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586 String black holes in four and
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588 String black holes in four and
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590 String black holes in four and
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592 Appendix A Similarly, we can de
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594 Appendix A We can now introduce
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596 Appendix A If we now consider l
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598 Appendix A There is another inv
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600 Appendix A Using this represent
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602 Appendix A As usual, the curvat
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604 Appendix A With the Euler-angle
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606 Appendix A which is a function
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608 Appendix A A.4.1 H-covariant de
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610 Appendix A and the curvature, w
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612 Appendix B Lorentz transformati
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614 Appendix B provide a representa
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616 Appendix B When d is even, both
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618 Appendix B Table B.1. Spinors t
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620 Appendix B Let us now consider
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622 Appendix B is equivalent to req
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624 Appendix B However, it is possi
- Page 1292: 626 Appendix B B.1.11 Six dimension
- Page 1296: 628 Appendix B Table B.2. Possible
- Page 1300: 630 Appendix B representation of th
- Page 1304: 632 Appendix B Although these two r
- Page 1308: Appendix C n-Spheres An n-dimension
- Page 1312: 636 Appendix C C.1 S 3 and S 7 as H
- Page 1316: Appendix D Palatini’s identity Th
- Page 1320: The metric Appendix F Connections a
- Page 1324: 642 Appendix F The components of th
- Page 1328: 644 Appendix F and the Ricci scalar
- Page 1332: 646 Appendix F The non-vanishing co
- Page 1336: Appendix G The harmonic operator on
- Page 1340: [1] L. F. Abbott and S. Deser, Nucl
- Page 1346: [128] E. Bergshoeff, R. Kallosh, T.
- Page 1350: [222] L. Castellani, R. D’Auria,
- Page 1354: [316] S. Deser and B. Zumino, Phys.
- Page 1358: [411] D. V. Gal’tsov and O. V. Ke
- Page 1362: [506] S. F. Hassan, Nucl. Phys. B58
- Page 1366: References 663 [600] J. M. Izquierd
- Page 1370: [696] R. R. Metsaev and A. A. Tseyt
- Page 1374: [793] H. Quevedo, Fortschr. Phys. 3
- Page 1378: [889] G. ’t Hooft, Nucl. Phys. B6
- Page 1382: Index Page numbers in italic are th
- Page 1386: isotropic, 198, 216, 232, 234, 265,
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integrability equation in N = 2, d
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Newman-Penrose formalism, see Newma
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Dp, 538 compactified on T 6 , 577 c
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extended, 121, 150, 160-163, 379, 3