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Wave Propagation in Linear Media | re-examined

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Bibliography<br />

[91] C. R. Leavens and G. C. Aers. Bohm Trajectories and the Tunnel<strong>in</strong>g Time Problem.<br />

In Roland Wiesendanger and Hans-Joachim Guntherodt, editors, Scann<strong>in</strong>g Tunnel<strong>in</strong>g<br />

Microscopy III, pages 105{140. Spr<strong>in</strong>ger, Berl<strong>in</strong>, 1996.<br />

[92] Fritz Paschke. Modellbildung. lectu<strong>re</strong> notes, 1993.<br />

[93] Roger F. Harr<strong>in</strong>gton. Time-harmonic Electromagnetic Fields. McGraw-Hill, New York,<br />

1961.<br />

[94] Paul Lorra<strong>in</strong> and Dale R. Corson. Electromagnetic Fields and <strong>Wave</strong>s. W. H. F<strong>re</strong>eman,<br />

San Francisco, 1970.<br />

[95] Arnulf We<strong>in</strong>z<strong>in</strong>ger. Die Exponentialleitung als Impedanztransformator und ih<strong>re</strong> Realisierung<br />

als Microstrip-Leitung. Diploma thesis, Technische Hochschule Wien, 1971.<br />

[96] Charles M. Knop. Pulsed Electromagnetic <strong>Wave</strong> <strong>Propagation</strong> <strong>in</strong> Dispersive <strong>Media</strong>.<br />

IEEE Transactions on Antennas and <strong>Propagation</strong>, 12:494{496, 1964.<br />

[97] Richard E. Haskell and Carl T. Case. Transient Signal <strong>Propagation</strong> <strong>in</strong> Lossless, Isotropic<br />

Plasma. IEEE Transactions on Antennas and <strong>Propagation</strong>, 15(3):458{464, 1967.<br />

[98] R. E. McIntosh and Alfonso Malaga. Time dispersion of electromagnetic pulses by the<br />

ionosphe<strong>re</strong>. Radio Science, 15(3):645{654, 1980.<br />

[99] Junichi Takanaka, Suguru Yamagishi, Hiroaki Taki, Akihiro Morimoto, and Tetsuro<br />

Kobayashi. Guid<strong>in</strong>g of a one-dimensional optical beam with nanometer diameter. Optics<br />

Letters, 22(7):475{477, 1997.<br />

[100] Fritz Paschke. Zum Verhalten der St<strong>re</strong>ifenleitung bei Submikrometerabstanden. lectu<strong>re</strong><br />

notes, 1997.<br />

[101] G. Diener. Superlum<strong>in</strong>al group velocities and <strong>in</strong>formation transfer. Physics Letters A,<br />

223:327{331, 1996.<br />

[102] W. Heitmann and G. Nimtz. On causality proofs of superlum<strong>in</strong>al barrier traversal of<br />

f<strong>re</strong>quency band limited wave packets. Physics Letters A, 196:154{158, 1994.<br />

[103] Arm<strong>in</strong> Hermann, editor. Albert E<strong>in</strong>ste<strong>in</strong> / Arnold Sommerfeld, Briefwechsel. Schwabe<br />

& Co, Basel, 1968.<br />

[104] Marco A. de Moura and Douglas F. de Albuquerque. Remarks on the traversal time <strong>in</strong><br />

a tunnel<strong>in</strong>g process. Solid State Communications, 74(5):353{354, 1990.<br />

[105] Thomas Weiland. Die Disk<strong>re</strong>tisierung der Maxwell-Gleichungen. Phys. Bl., 42(7):191{<br />

201, 1986.<br />

[106] Richard Albanese, John Penn, and Richard Med<strong>in</strong>a. Short-rise-time microwave pulse<br />

propagation through dispersive biological media. J. Opt. Soc. Am. A, 6(9):1441{1446,<br />

1989.<br />

243

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