By Pisin Chen, Kevin Reil
This court cases quantity of the third overseas Workshop on Quantum points of Beam Physics, provides the newest advances in beam dynamics. The frontiers of beam examine element to more and more excessive power, larger brightness and decrease emittance beams with ever-increasing particle species. those calls for have caused a quickly turning out to be variety of beam phenomena that contain quantum results. as well as the extra tested subject matters, this quantity covers issues on excessive energy-density particle and photon beams for laboratory astrophysics investigations, in addition to the appliance of beam physics services to astrophysics stories. different fascinating new issues are the physics of ultra-cold or condensed beams, reminiscent of the "crystalline beams" and the Bose-Einstein condensate "atom lasers". This e-book should be a necessary resource of connection with readers attracted to the interdisciplinary frontiers of "quantum beam physics" that contain beam physics, particle physics, laser technology, astrophysics, condensed topic physics, nuclear and atomic physics.
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Extra resources for Quantum Aspects Of Beam Physics 2003: The Joint 28th ICFA Advanced Beam Dynamics And Advanced & Novel Accelerators , Workshop, Hiroshima, Japan 7 Ã» 11 January 2003
V. Fedotov and I. Hofmann, Phys. Rev. ST-AB 5,024202 (2002). 15. T. Wangler, R F Linear Accelerators (Wiley, New York, 1998). 16. L. D. Landau and E. M. Lifshitz, Physical Kinetics (Butterworth-Heinemann, Oxford, 1996). 17. F. Ruggiero, Ann. Phys. ) 153,122 (1984); F. Ruggiero, E. Picasso and L. A. Radicati, Ann. Phys. (N. ) 197,396 (1990). 18. J. Struckmeier, Phys. Rev. ST-AB 3,034202 (2000). 19. W. Paul and J. Baschnagel, Stochastic Processes: From Physics to Finance (Springer, Berlin, 2000) 20.
Thesis, University of Madras, 1997; R. Jagannathan and S. A. Khan, ICFA Beam Dynamics Newsletter 13, 21 (1997). R. Fedele and G. Miele, Nuovo Cim. D13, 1527 (1991); R. Fedele and V. I. Man’ko, in QABP-I; M. A. Man’ko, in QABP-IIand references therein; S. A. Khan and M. Pusterla, Eur. Phys. J. A7, 583 (2000); M. Pusterla, in QABP-11, this Proceedings and references therein. N. Cufaro Petroni, S. De Martino, S. De Siena, and F. Illuminati, in QABP-I, QABP-11, this Proceedings and references therein.
The last spin-dependent term accounts for the Stern-Gerlach kicks in the transverse phase-space and the Thomas-Bargmann-Michel-Telegdispin evolution. l2 The following interesting aspect of quantum beam optics should be mentioned. In the case of a spin-0 particle also one can derive the quantum beam optical Hamiltonian 'I? 8 It would also contain all the terms corresponding to the classical theory plus the quantum correction terms. But, these quantum correction terms are not identical to the quantum correction terms in the Dirac case.
Quantum Aspects Of Beam Physics 2003: The Joint 28th ICFA Advanced Beam Dynamics And Advanced & Novel Accelerators , Workshop, Hiroshima, Japan 7 Ã» 11 January 2003 by Pisin Chen, Kevin Reil