Title :
Motion-induced radiation of charged particles in curved electromagnetic space
Author :
Yangjie Liu ; Ang, L.K.
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
Cerenkov radiation has hinted people since its birth as a basic observable phenomenon to unfold energy transfer from kinetic energy of moving electrons to electromagnetic waves, evanescent or traveling, whose physical principle is shared by transition radiation and Bremsstrahlung as well. However, such dissipative motion-induced radiations require particles to move faster than light in medium or to encounter velocity transition to pump energy. Whereas a recent emerging Transformation Optics strategy1 provides such a possibility, which enables manipulating light flow almost arbitrarily, for instance to invisiblize objects hidden inside an ad-hoc device-cloak, of inhomogeneous permittivity and permeability. Invariance form of Maxwell´s equations, under various coordinates, including curvilinear, guarantees light to behave according to man´s design, shaped by curved electromagnetic space, in contrast to still-flat mechanical space, asymmetrically.
Keywords :
Cherenkov radiation; Maxwell equations; ad hoc networks; bremsstrahlung; electromagnetic waves; invisibility cloaks; particle beams; particle detectors; permeability; permittivity; Bremsstrahlung; Cherenkov radiation; Maxwell equations; ad-hoc device; charged particles; cloak; curved electromagnetic space; dissipative motion-induced radiations; electromagnetic waves; energy transfer; inhomogeneous permittivity; permeability; pump energy; transition radiation; velocity transition; Educational institutions; Electromagnetics; Energy exchange; Geometry; Imaging; Kinetic energy; Optics;
Conference_Titel :
Plasma Science (ICOPS), 2012 Abstracts IEEE International Conference on
Conference_Location :
Edinburgh
Print_ISBN :
978-1-4577-2127-4
Electronic_ISBN :
0730-9244
DOI :
10.1109/PLASMA.2012.6383821