activity
20112015
most citedQuantum transport simulations in a programmable nanophotonic processor

525 citations · 1.6k across the 6 of their papers we have counts for

collaborators

11 papers

quant-ph2015★ 525 cited

Quantum transport simulations in a programmable nanophotonic processor

Nicholas C. Harris, Gregory R. Steinbrecher, Jacob Mower +9

Environmental noise and disorder play critical roles in quantum particle and wave transport in complex media, including solid-state and biological systems. Recent work has predicte…

physics.optics2014★ 424 cited

Efficient, Compact and Low Loss Thermo-Optic Phase Shifter in Silicon

Nicholas C. Harris, Yangjin Ma, Jacob Mower +4

We design a resistive heater optimized for efficient and low-loss optical phase modulation in a silicon-on-insulator (SOI) waveguide and characterize the fabricated devices. Modula…

quant-ph2014★ 211 cited

Coherent spin control of a nanocavity-enhanced qubit in diamond

Luozhou Li, Tim Schröder, Edward H. Chen +11

A central aim of quantum information processing is the efficient entanglement of multiple stationary quantum memories via photons. Among solid-state systems, the nitrogen-vacancy (…

quant-ph2014★ 95 cited

Towards High-Fidelity Quantum Computation and Simulation on a Programmable Photonic Integrated Circuit

Jacob Mower, Nicholas C. Harris, Gregory R. Steinbrecher +2

We propose and analyze the design of a programmable photonic integrated circuit for high-fidelity quantum computation and simulation. We demonstrate that the reconfigurability of o…

physics.optics2014★ 331 cited

On-Chip Detection of Entangled Photons by Scalable Integration of Single-Photon Detectors

Faraz Najafi, Jacob Mower, Nicholas Harris +8

Photonic integrated circuits (PICs) have emerged as a scalable platform for complex quantum technologies using photonic and atomic systems. A central goal has been to integrate pho…

quant-ph2013★ 17 cited

Finite-key analysis of high-dimensional time-energy entanglement-based quantum key distribution

Catherine Lee, Jacob Mower, Zheshen Zhang +2

We present a security analysis against collective attacks for the recently proposed time-energy entanglement-based quantum key distribution protocol, given the practical constraint…