Title :
New transport regime and Zitterbewegung effect in two-dimensional photonic crystal
Author :
Zhang, Xiangdong
Author_Institution :
Dept. of Phys., Beijing Normal Univ., Beijing
Abstract :
A new transport regime of electromagnetic wave in two-dimensional photonic crystal near the Dirac point has been demonstrated by exact numerical simulation. In this regime, the conductance of photon is inversely proportional to the thickness of sample, which can be described by Dirac equation very well. Based on it, some unusual beating effects, which can be regarded as optical analogue to Zitterbewegung of relativistic electron, can also be observed near the Dirac point in a two-dimensional photonic crystal. The superiority of such a phenomenon for photons is that it can be found in different scaling structures with wide frequency regions. It can be observed by measuring the time dependence of the transmission coefficient through photonic crystal slabs. Thus, it is particularly suited for experimentally observing this effect. We have observed such a phenomenon by exact numerical simulations, confirming a long-standing theoretical prediction.
Keywords :
electromagnetic waves; photonic crystals; 2D photonic crystal; Dirac equation; Dirac point; Zitterbewegung effect; electromagnetic wave; numerical simulation; optical analogue; relativistic electron; transport regime; Electromagnetic radiation; Electromagnetic refraction; Electromagnetic scattering; Electrons; Equations; Lattices; Numerical simulation; Optical refraction; Photonic crystals; Physics;
Conference_Titel :
Metamaterials, 2008 International Workshop on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-2608-9
Electronic_ISBN :
978-1-4244-2609-6
DOI :
10.1109/META.2008.4723521