Twistability of Spin Particle Trajectories
Teoretičeskaâ i matematičeskaâ fizika, Tome 135 (2003) no. 2, pp. 280-288
Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Using the geometric optics approximation, we establish the existence of the additional twisting effect for trajectories of spin particles, i.e., the analogue of the Magnus optical effect. The effect is determined by the polarization (chirality) and the curvature of the particle trajectory. We investigate the proton scattering in the Coulomb field of a nucleus and the mirror reflection law breaking for ultracold neutrons.
Keywords: geometric optics, Magnus optical effect, ultracold neutrons.
@article{TMF_2003_135_2_a7,
     author = {N. R. Sadykov},
     title = {Twistability of {Spin} {Particle} {Trajectories}},
     journal = {Teoreti\v{c}eska\^a i matemati\v{c}eska\^a fizika},
     pages = {280--288},
     year = {2003},
     volume = {135},
     number = {2},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/TMF_2003_135_2_a7/}
}
TY  - JOUR
AU  - N. R. Sadykov
TI  - Twistability of Spin Particle Trajectories
JO  - Teoretičeskaâ i matematičeskaâ fizika
PY  - 2003
SP  - 280
EP  - 288
VL  - 135
IS  - 2
UR  - http://geodesic.mathdoc.fr/item/TMF_2003_135_2_a7/
LA  - ru
ID  - TMF_2003_135_2_a7
ER  - 
%0 Journal Article
%A N. R. Sadykov
%T Twistability of Spin Particle Trajectories
%J Teoretičeskaâ i matematičeskaâ fizika
%D 2003
%P 280-288
%V 135
%N 2
%U http://geodesic.mathdoc.fr/item/TMF_2003_135_2_a7/
%G ru
%F TMF_2003_135_2_a7
N. R. Sadykov. Twistability of Spin Particle Trajectories. Teoretičeskaâ i matematičeskaâ fizika, Tome 135 (2003) no. 2, pp. 280-288. http://geodesic.mathdoc.fr/item/TMF_2003_135_2_a7/

[1] B. Ya. Zeldovich, V. S. Liberman, Kvantovaya elektronika, 17 (1990), 433 ; А. В. Дугин, Б. Я. Зельдович, Н. Д. Кундикова, В. С. Либерман, Письма в ЖЭТФ, 53 (1991), 186 ; ЖЭТФ, 100 (1991), 1474 ; А. В. Воляр, С. Н. Лапаева, Письма в Журн. технич. физ., 18:8 (1992), 53; 20:8 (1994), 4; Н. Р. Садыков, Опт. и спектр., 89:2 (2000), 273

[2] N. R. Sadykov, Opt. i spektr., 84:4 (1998), 589

[3] N. B. Baranova, A. Yu. Savchenko, B. Ya. Zeldovich, Pisma v ZhETF, 59:4 (1994), 216

[4] M. V. Berry, Proc. Roy. Soc. London. A, 392 (1984), 216 ; Y. Aharonov, J. Anandan, Phys. Rev. Lett., 58 (1987), 1593 ; S. Pancharatnam, Proc. Indian Acad. Sci. A, 44 (1956), 247 ; 46, 1 | MR | DOI | MR | MR | MR

[5] S. M. Rytov, DAN SSSR, 28 (1938), 263; В. В. Владимирский, ДАН СССР, 31 (1941), 222

[6] D. V. Zaretskii, V. K. Sirotkin, YaF, 39 (1984), 585; E. Kolomensky et al., Phys. Lett. B, 107 (1981), 272 ; Yu. G. Abov et al., Phys. Lett., 12 (1964), 25 ; В. М. Лобашев и др., Письма в ЖЭТФ, 3 (1966), 268 | DOI | DOI

[7] L. P. Gorkov, I. E. Dzyaloshinskii, ZhETF, 67 (1974), 397; В. П. Алфименков, УФН, 144 (1984), 361 | DOI

[8] S. M. Troshin, N. E. Tyurin, UFN, 164 (1994), 1073 | DOI

[9] G. V. Danilyan, UFN, 131 (1980), 329 | DOI

[10] N. R. Sadykov, Kvantovaya elektronika, 20 (1993), 1140

[11] N. R. Sadykov, Opt. i spektr., 78:2 (1995), 300

[12] A. I. Akhiezer, V. B. Berestetskii, Kvantovaya elektrodinamika, Nauka, M., 1981 | MR

[13] V. B. Berestetskii, E. M. Lifshits, L. P. Pitaevskii, Kvantovaya elektrodinamika, Nauka, M., 1980 | MR

[14] N. R. Sadykov, Kvantovaya elektronika, 19 (1992), 1021

[15] N. R. Sadykov, Kvantovaya elektronika, 20 (1993), 1137

[16] L. H. Thomas, Nature, 117 (1926), 514 | DOI

[17] I. Aizenberg, V. Grainer, Mekhanizmy vozbuzhdeniya yadra, Atomizdat, M., 1973

[18] I. M. Frank, UFN, 161:11 (1991), 107

[19] F. I. Fedorov, DAN SSSR, 105 (1955), 465 ; Журн. прикл. спектр., 27 (1977), 580 | Zbl