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References - Bogoliubov Laboratory of Theoretical Physics - JINR

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gravitomagnetic transverse density<br />

ρ Gr<br />

T (� b)= 1<br />

2π<br />

� 0<br />

∞<br />

dqqJ0(qb)A(q 2 )+sin(φ) 1<br />

2π<br />

� ∞<br />

0<br />

dq q2<br />

J1(qb)B(q<br />

2MN<br />

2 ). (4)<br />

Our calculations <strong>of</strong> the corresponding three dimension plots over the impact parameter<br />

bx and by are shown in fig.2 for the total and the separate parts <strong>of</strong> the u and d quarks<br />

and for different values <strong>of</strong> x. One can see that the asymmetry at small x is quite small<br />

and its maximal values are concentrated almost at the same distances from the center <strong>of</strong><br />

nucleon as the transverse charge density <strong>of</strong> the proton.<br />

x=0.1<br />

x=0.3<br />

x=0.6<br />

x=0.9<br />

(u+d) (u) (d)<br />

Figure 2: (a) The graviton density <strong>of</strong> transverse polarized the nucleon.<br />

120

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