7 papers
Theory of quantum comb enhanced interferometry
Haowei Shi, Quntao Zhuang
Optical frequency combs, named for their comb-like peaks in the spectrum, are essential for various sensing applications. As the technology develops, its performance has reached th…
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…
Loss-robust crossband entanglement generation beyond the direct-transduction limit
Haowei Shi, Quntao Zhuang
Entanglement across distant frequency bands is a crucial resource in quantum networking. However, directly entangling crossband photons, e.g., microwave and optical, is challenging…
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…
Quantum-enhanced radio-frequency photonic distributed imaging
Haowei Shi, Christopher M. Jones, Mengjie Yu +2
Quantum physics has brought enhanced capability in various sensing applications. Despite challenges from noise and loss in the radio-frequency (RF) domain, [Phys. Rev. Lett. 124, 1…
Entangled dual-comb spectroscopy
Abdulkarim Hariri, Shuai Liu, Haowei Shi +3
Optical frequency combs have emerged as a cornerstone for a wide range of areas, including spectroscopy, ranging, optical clocks, time and frequency transfer, waveform synthesis, a…