Theoretical Analysis of Plasmon-Induced Transparency in Ring-resonators Coupled Channel Drop Filter Systems
Author:
Publisher
Springer Science and Business Media LLC
Subject
Biochemistry,Biophysics,Biotechnology
Link
http://link.springer.com/content/pdf/10.1007/s11468-014-9760-x.pdf
Reference30 articles.
1. Mirza AB, Singh S (2012) Wave-vector mismatch effects in electromagnetically induced transparency in Y-type systems. Phys Rev A 85(5):053837
2. Laupretre T, Kumar S, Berger P, Faoro R, Ghosh R, Bretenaker F, Goldfarb F (2012) Ultranarrow resonance due to coherent population oscillations in a Λ-type atomic system. Phys Rev A 85(5):051805(R)
3. Raymond Ooi CH, Tan KS (2013) Controlling double quantum coherence and electromagnetic induced transparency with plasmonic metallic nanoparticle. Plasmonics 8(2):891–898
4. Chen JX, Wang P, Chen CC, Lu YH, Ming H, Zhan QW (2011) Plasmonic EIT-like switching in bright-dark-bright plasmon resonators. Opt Express 19(7):5970–5978
5. Xiao YF, Zou XB, Jiang W, Chen YL, Guo GC (2007) Analog to multiple electromagnetically induced transparency in all-optical drop-filter systems. Phys Rev A 75(6):063833
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