Semiconductor Physics, Quantum Electronics and Optoelectronics, 8 (2) P. 070-074 (2005).


References

1. I.M Ternov, Synchrotron radiation // Usp. Fiz. Nauk, 165 (4), p.429-456 (1995) (in Russian).
https://doi.org/10.3367/UFNr.0165.199504c.0429
2. A.V. Konstantinovich, S.V. Melnychuk, I.M. Rarenko, I.A. Konstantinovich, V.P. Zharkoi, Radiation spectrum of the system of charged particles moving in nonabsorbable isotropic medium // J. Physical Studies, 4 (1), p.48-56 (2000) (in Ukrainian).
3. A.V. Konstantinovich, S.V. Melnychuk, I.A. Konstantinovich, Fine structure of radiation spectrum of charged particles moving in magnetic fields in non absorbable isotropic media and in vacuum // Romanian Journal of Physics, 48 (5-6), p. 717-725 (2003).
4. J. Schwinger J., Tsai Wu-yang, T. Erber, Classical and quantum theory of synergic synchrotronCherenkov radiation // Ann. of Phys., 96 (2), p.303- 332 (1976).
https://doi.org/10.1016/0003-4916(76)90194-9
5. I.A. Konstantinovich, S.V. Melnychuk, A.V. Konstantinovich., Classical radiation theory of charged particles. II.Medium influence on the radiation spectrum of charged particles moving in electromagnetic fields // Bulletin of Chernivtsi National University. Physics and Electronics, 132, p. 24-39 (2002) (in Ukrainian).
6. A.V. Konstantinovich, S.V. Melnychuk, I.A. Konstantinovich, Radiation spectra of charged particles moving in a spiral in magnetic fields // Proceedings of the Romanian Academy. A, 4(3), p. 175-182 (2003).
7. A.V. Konstantinovich, S.V. Melnychuk, I.A. Konstantinovich, Radiation power spectral distribution of electrons moving in a spiral in magnetic fields // Journal of Optoelectronics and Advanced Materials, 5(5), p. 1423-1431 (2003).
8. A.V. Konstantinovich, S.V. Melnychuk, I.A. Konstantinovich, Classical radiation theory of charged particles. I.Retarded and advanced potentials and electromagnetic fields intensites and the Lorentz's self-interaction method // Bulletin of Chernivtsi National University. Physics and Electronics, 102, p. 5-13 (2001) (in Ukrainian).
9. J. Schwinger, On the classical radiation of accelerated electrons // Phys. Rev., 75(12), p. 1912- 1925 (1949).
https://doi.org/10.1103/PhysRev.75.1912
10. P.A.M. Dirac, Classical theory of radiating electrons// Proc Roy. Soc. A., 167 (1), p.148-169 (1938).
https://doi.org/10.1098/rspa.1938.0124
11. B.M. Bolotovskii, The theory of the VavilovCherenkov effect // Usp. Fiz. Nauk., 62(3), p. 201- 246 (1957) (in Russian).
https://doi.org/10.3367/UFNr.0062.195707a.0201
12. A.A. Sokolov, V.Ch. Zhukovskii, M.M. Kolesnikova, N.S. Nikitina, O.E. Shishanin, On the synchrotron radiation of the electron moving in a spiral // Izv. Vuzov. Fizika, No 2, p.108-116 (1969.).
https://doi.org/10.1007/BF00819319
13. V.N. Tsytovich, On the radiation of the rapid electrons in the magnetic field in the presence of medium // Bulletin of Moscow State University, 11, p.27-36 (1951) (in Russian).