Monolithic source of photon pairs R Horn, P Abolghasem, BJ Bijlani, D Kang, AS Helmy, G Weihs Physical review letters 108 (15), 153605, 2012 | 164 | 2012 |
Inherent polarization entanglement generated from a monolithic semiconductor chip RT Horn, P Kolenderski, D Kang, P Abolghasem, C Scarcella, AD Frera, ... Scientific reports 3 (1), 2314, 2013 | 113 | 2013 |
Generation of polarization-entangled photon pairs in a Bragg reflection waveguide A Vallés, M Hendrych, J Svozilik, R Machulka, P Abolghasem, D Kang, ... Optics express 21 (9), 10841-10849, 2013 | 65 | 2013 |
Generation of maximally-polarization-entangled photons on a chip SV Zhukovsky, LG Helt, D Kang, P Abolghasem, AS Helmy, JE Sipe Physical Review A—Atomic, Molecular, and Optical Physics 85 (1), 013838, 2012 | 41 | 2012 |
Difference-frequency generation in AlGaAs Bragg reflection waveguides JB Han, P Abolghasem, D Kang, BJ Bijlani, AS Helmy Optics letters 35 (14), 2334-2336, 2010 | 40 | 2010 |
Monolithic semiconductor chips as a source for broadband wavelength-multiplexed polarization entangled photons D Kang, A Anirban, AS Helmy Optics express 24 (13), 15160-15170, 2016 | 39 | 2016 |
Monolithic photonics using second-order optical nonlinearities in multilayer-core Bragg reflection waveguides P Abolghasem, JB Han, D Kang, BJ Bijlani, AS Helmy IEEE Journal of Selected Topics in Quantum Electronics 18 (2), 812-825, 2011 | 29 | 2011 |
Generation of polarization entangled photons using concurrent type-I and type-0<? A3B2 show [pmg: line-break justify=" yes"/]?> processes in AlGaAs ridge waveguides D Kang, AS Helmy Optics letters 37 (9), 1481-1483, 2012 | 27 | 2012 |
Bragg reflection waveguides as integrated sources<? A3B2 show [pmg: line-break justify=" yes"/]?> of entangled photon pairs SV Zhukovsky, LG Helt, P Abolghasem, D Kang, JE Sipe, AS Helmy Journal of the Optical Society of America B 29 (9), 2516-2523, 2012 | 25 | 2012 |
Hyperentangled photon sources in semiconductor waveguides D Kang, LG Helt, SV Zhukovsky, JP Torres, JE Sipe, AS Helmy Phys. Rev. A 89 (2), 023833, 2014 | 22 | 2014 |
Two polarization-entangled sources from the same semiconductor chip D Kang, M Kim, H He, AS Helmy Physical Review A 92 (1), 013821, 2015 | 21 | 2015 |
Two-photon quantum state engineering in nonlinear photonic nanowires D Kang, A Pang, Y Zhao, AS Helmy JOSA B 31 (7), 1581-1589, 2014 | 20 | 2014 |
Dual-Hop RF/FSO Systems Over - Shadowed and Fisher-Snedecor Fading Channels With Non-Zero Boresight Pointing Errors J Ding, X Xie, L Tan, J Ma, D Kang Journal of Lightwave Technology 40 (3), 708-719, 2022 | 19 | 2022 |
Analytical description of photonic waveguides with multilayer claddings: towards on-chip generation of entangled photons and Bell states SV Zhukovsky, LG Helt, D Kang, P Abolghasem, AS Helmy, JE Sipe Optics Communications 301, 127-140, 2013 | 16 | 2013 |
Secrecy performance analysis in the FSO communication system considering different eavesdropping scenarios H Wu, D Kang, J Ding, J Yang, Q Wang, J Wu, J Ma Optics Express 30 (23), 41028-41047, 2022 | 14 | 2022 |
Optimal coupling condition analysis of free-space optical communication receiver based on few-mode fiber L Tan, Y Chen, L Zhao, S Yu, D Kang, Q Yang, J Ma Optical Fiber Technology 53, 102004, 2019 | 14 | 2019 |
Electrically pumped efficient broadband CW frequency conversion in diode lasers using bulk χ2 ML Iu, N Zareian, D Kang, E Chen, P Charles, B Janjua, Y Akasaka, ... APL Photonics 5 (1), 2020 | 13 | 2020 |
Entropy squeezing of an atom with a k-photon in the Jaynes–Cummings model DP Kang, QH Liao, AM Ashfaq, YY Wang, ST Liu Chinese Physics B 19 (1), 014206, 2010 | 13 | 2010 |
Widely tunable frequency conversion in monolithic semiconductor waveguides at 2.4 µm P Abolghasem, D Kang, DF Logan, M Lungwitz, AS Helmy Optics Letters 39 (12), 3591-3594, 2014 | 12 | 2014 |
Performance analysis of optical spatial modulation over a correlated gamma–gamma turbulence channel S Yu, C Geng, J Zhong, D Kang Applied Optics 61 (8), 2025-2035, 2022 | 10 | 2022 |