|Physics||Yale University, New Haven, CT|
Area:Quantum optics, nano-optics, nonlinear optics, mesoscopic physics, quantum chaos.
Cao, Hui, Semiconductor cavity QED and related devices, Thesis (Ph. D.)--Stanford University, 1997.
Mean distance: 18.06
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|Yamilov AG, Sarma R, Yakovlev VV, et al. (2018) Coherent injection of light into an absorbing scattering medium with a microscopic pore. Optics Letters. 43: 2189-2192|
|Xiong W, Ambichl P, Bromberg Y, et al. (2017) Principal modes in multimode fibers: exploring the crossover from weak to strong mode coupling. Optics Express. 25: 2709-2724|
|Hokr BH, Thompson JV, Bixler JN, et al. (2017) Enabling time resolved microscopy with random Raman lasing. Scientific Reports. 7: 44572|
|Liew SF, Knitter S, Weiler S, et al. (2017) Intracavity frequency-doubled degenerate laser. Optics Letters. 42: 411-414|
|Liu C, Cao H, Choma MA. (2016) Coherent artifact suppression in line-field reflection confocal microscopy using a low spatial coherence light source. Optics Letters. 41: 4775-4778|
|Cerjan A, Redding B, Ge L, et al. (2016) Controlling mode competition by tailoring the spatial pump distribution in a laser: a resonance-based approach. Optics Express. 24: 26006-26015|
|Coluccelli N, Cassinerio M, Redding B, et al. (2016) The optical frequency comb fibre spectrometer. Nature Communications. 7: 12995|
|Sarma R, Yamilov AG, Petrenko S, et al. (2016) Control of Energy Density inside a Disordered Medium by Coupling to Open or Closed Channels. Physical Review Letters. 117: 086803|
|Xiong W, Ambichl P, Bromberg Y, et al. (2016) Spatiotemporal Control of Light Transmission through a Multimode Fiber with Strong Mode Coupling. Physical Review Letters. 117: 053901|
|Liu C, Knitter S, Cong Z, et al. (2016) High-speed line-field confocal holographic microscope for quantitative phase imaging. Optics Express. 24: 9251-65|