activity
20152020
most citedTopological insulator and particle pumping in a one-dimensional shaken optical lattice

76 citations · 110 across the 5 of their papers we have counts for

collaborators

10 papers

quant-ph2020

Classifying global state preparation via deep reinforcement learning

Tobias Haug, Wai-Keong Mok, Jia-Bin You +3

Quantum information processing often requires the preparation of arbitrary quantum states, such as all the states on the Bloch sphere for two-level systems. While numerical optimiz…

quant-ph202026 cited

Reconfigurable photon sources based on quantum plexcitonic systems

Jia-Bin You, Xiao Xiong, Ping Bai +9

A single photon in a strongly nonlinear cavity is able to block the transmission of the second photon, thereby converting incident coherent light into anti-bunched light, which is…

quant-ph2019

Microtoroidal resonators enhance long-distance dynamical entanglement generation in chiral quantum networks

Wai-Keong Mok, Davit Aghamalyan, Jia-Bin You +1

Chiral quantum networks provide a promising route for realising quantum information processing and quantum communication. Here, we describe how two distant quantum nodes of chiral…

quant-ph2019

Long-distance dissipation-assisted transport of entangled states via a chiral waveguide

Wai-Keong Mok, Davit Aghamalyan, Jia-Bin You +4

Quantum networks provide a prominent platform for realizing quantum information processing and quantum communication, with entanglement being a key resource in such applications. H…

physics.optics2019

Quantum Plasmonic Immunoassay Sensing

Nuttawut Kongsuwan, Xiao Xiong, Ping Bai +4

Plasmon-polaritons are among the most promising candidates for next generation optical sensors due to their ability to support extremely confined electromagnetic fields and empower…

quant-ph20194 cited

Control of spontaneous emission of qubits from weak to strong coupling

Wai-Keong Mok, Jia-Bin You, Wenzu Zhang +2

Photon emission and absorption by an individual qubit are essential elements for the quantum manipulation of light. Here we demonstrate the controllability of spontaneous emission…