collaborators

5 papers

physics.optics2026

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide

Tushar Sanjay Karnik, Xinyi Ren, Chun-Ho Lee +16

Quantum squeezed states of light can enhance measurement sensitivity beyond classical limits and enable quantum information processing, but scalable low-loss sources remain challen…

quant-ph2026

Resource-Efficient Quantum-Enhanced Compressive Imaging via Quantum Classical co-Design

Haowei Shi, Visuttha Manthamkarn, Christopher M. Jones +2

Quantum sensing can enhance imaging performance by reducing measurement noise below the classical limit, thereby improving the signal-to-noise ratio (SNR) of acquired data. In conv…

quant-ph2026

Variational Quantum Transduction

Pengcheng Liao, Haowei Shi, Quntao Zhuang

Quantum transducers are critical for quantum interconnect, enabling coherent signal transfer across disparate frequency domains. Beyond material and device advances, protocol desig…

physics.optics2026

Quantum squeezing in an all-resonant periodically poled lithium niobate microresonator

Xinyi Ren, Reshma Kopparapu, Tushar Sanjay Karnik +12

Quantum noise limits the sensitivity of optical measurements, but squeezed states of light enable quantum-enhanced metrology, sensing, and information processing. Most on-chip sque…

quant-ph2025

Quantum transduction via generalized continuous-variable teleportation

Quntao Zhuang

Quantum transduction converts quantum states between different frequencies. Similarly, quantum teleportation transfers quantum states between different systems. While often appreci…