Title :
Strongly Localized Evanescent Optical Tamm States at Metal-DBR Interface
Author :
Xu-Lin Zhang ; Jun-Feng Song ; Xian-Bin Li ; Jing Feng ; Hong-Bo Sun
Author_Institution :
State Key Lab. on Integrated Optoelectron., Jilin Univ., Changchun, China
Abstract :
We study the eigenmodes of optical Tamm states (OTSs) at metal-distributed Bragg reflector interface. A peculiar type of non-propagating OTSs, named as evanescent OTSs, is found with mode propagation constant exhibiting the imaginary part to be much larger than the real part. The existence of such evanescent OTSs is attributed to the extension of Bragg forbidden band under complex propagation constants. An analytical solution of the evanescent OTSs is derived. Compared with propagating OTSs, transverse magnetic-polarized evanescent OTSs are found to exhibit more strongly localized field distributions associated with enhanced surface field intensity, which may be beneficial for surface-related applications such as sensing. Potential application as modulators is also demonstrated by using the nearly vertical dispersion characteristics around the transition wavelength between propagating OTSs and evanescent OTSs.
Keywords :
distributed Bragg reflectors; energy gap; surface states; Bragg forbidden band; complex propagation constant; metal-DBR interface; metal-distributed Bragg reflector interface; mode propagation constant; nonpropagating OTS; strongly localized evanescent optical Tamm states; surface related applications; Optical refraction; Optical sensors; Optical surface waves; Optical variables control; Propagation constant; Refractive index; Surface waves; Bragg forbidden band; effective refractive index; optical Tamm states; strongly localized field distributions;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2013.2255583