Publications (17)
Quantum frequency combs and Hong-Ou-Mandel interferometry: the role of spectral phase coherence
Navin B. Lingaraju, Hsuan-Hao Lu, Suparna Seshadri +4
The Hong-Ou-Mandel interferometer is a versatile tool for analyzing the joint properties of photon pairs, relying on a truly quantum interference effect between two-photon probabil…
High-dimensional optical quantum logic in large operational spaces
Poolad Imany, Jose A. Jaramillo-Villegas, Mohammed S. Alshaykh +6
The probabilistic nature of single-photon sources and photon-photon interactions encourages encoding as much quantum information as possible in every photon for the purpose of phot…
Probing quantum walks through coherent control of high-dimensionally entangled photons
Poolad Imany, Navin B. Lingaraju, Mohammed S. Alshaykh +2
Quantum walks in atomic systems, owing to their continuous nature, are especially well-suited for the simulation of many-body physics and can potentially offer an exponential speed…
Quantum Phase Estimation with Time-Frequency Qudits in a Single Photon
Hsuan-Hao Lu, Zixuan Hu, Mohammed S. Alshaykh +5
The Phase Estimation Algorithm (PEA) is an important quantum algorithm used independently or as a key subroutine in other quantum algorithms. Currently most implementations of the…
A Compact, Robust, and Tunable Open Microcavity Platform for Solid-State Quantum Electrodynamics
Thi D. Hoang, Fateme Mahdikhany, Zixuan Wang +4
Open microcavities provide a powerful platform for studying cavity quantum electrodynamics in solid-state systems. However, operating open microcavities at cryogenic temperatures,…
Modeling Short-Range Microwave Networks to Scale Superconducting Quantum Computation
Nicholas LaRacuente, Kaitlin N. Smith, Poolad Imany +2
A core challenge for superconducting quantum computers is to scale up the number of qubits in each processor without increasing noise or cross-talk. Distributed quantum computing a…