• Breaking the optomechanical cooling limit by two drive fields on a membrane-in-the-middle system 

      He, Bing [Univ Mayor, Ctr Quantum Opt & Quantum Informat]; Wang, Chuan; Lin, Qing (AMER PHYSICAL SOC, 2019)
      We present a theoretical scheme for ground-state cooling of a mechanical resonator in a membrane-in-themiddle optomechanical system (OMS) driven by two red-detuned drive fields. The details of dynamical evolution of OMS ...
    • Dynamical Approach To Quantum Optomechanics: Motivation, Method, And Applications 

      Lin, Qing; He, Bing [Univ Mayor, Ctr Quantum Opt & Quantum Informat, Chile] (2023)
    • Efficient ground state cooling of a membrane by the combination of continuous-wave field and pulses 

      Chen, Zhi Xin; Lin, Qing; He, Bing [Univ Mayor, Ctr Quantum Opt & Quantum Informat, Chile] (IOP Publishing Ltd, 2021-05-28)
      We present an approach that realizes the ground state cooling of the membrane-in-middle optomechanical system. Instead of straightforwardly using the continuous-wave (CW) or pulsed external drives, we consider the combinations ...
    • Entangling Two Macroscopic Mechanical Resonators at High Temperature 

      He, Bing [Univ Mayor, Ctr Quantum Opt & Quantum Informat]; Lin, Qing; Xiao, Min (AMER PHYSICAL SOC, 2020)
      At high temperature, thermal decoherence dominates so that the entanglement of quantum states is difficult to preserve. Realizing high-temperature entanglement is, therefore, a challenge to the current quantum technologies. ...
    • Highly efficient cooling of mechanical resonator with square pulse drives 

      He, Bing [Univ Mayor, Ctr Quantum Opt & Quantum Informat, Camino Piramide 5750, Huechuraba, Chile]; Lin, Qing (OPTICAL SOC AMER, 2018)
      Ground state cooling of mechanical resonator is a way to generate macroscopic quantum states. Here we present a study of optomechanical cooling under the drive of square pulses without smooth profile. By illustrating the ...
    • Mechanical oscillations frozen on discrete levels by two optical driving fields 

      He, Bing [Ctr Opt & Informac Cuant, Univ Mayor, Chile]; Lin, Qing; Orszag, Miguel [Ctr Opt & Informac Cuant, Univ Mayor, Chile]; Xiao, Min (American Physical Society, 2020-07-20)
      We report a synchronization phenomenon which is simulated with an optomechanical system driven by two equally strong fields with different frequencies. Once the frequencies of the driving fields are properly matched, the ...
    • Nonlinear optomechanical resonance entering a self-organized energy transfer pattern 

      Lin, Qing; Wu, Yi; Li, Gang; He, Bing [Center for Quantum Optics and Quantum Information, Universidad Mayor, Chile] (Chaos, Solitons and Fractals, 2023-08)
      The energy transfer between different subsystems or different vibration modes is always one of the most interested problems in the study of the resonance phenomena in coupled nonlinear dynamical systems. With an optomechanical ...
    • Ultra-high optical nonreciprocity with a coupled triple-resonator structure 

      Cao, Zhen; Xie, Yi Fei; He, Bing [Ctr Opt & Informac Cuant, Univ Mayor, Chile]; Lin, Qing (IOP Publishing Ltd., 2021)
      Optical transmission nonreciprocity as a widely investigated phenomenon is essential to various applications. Many sophisticated mechanisms have been proposed and tested for achieving the optical nonreciprocity on integrated ...


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