activity
20162021
most citedQuantum circuits with many photons on a programmable nanophotonic chip

551 citations · 604 across the 5 of their papers we have counts for

collaborators
Showing quant-phShow all

12 papers · 1 filter

quant-ph2021

Climbing the Fock ladder: Advancing multiphoton state generation

M. Engelkemeier, J. Sperling, J. Tiedau +5

A scheme for the enhanced generation of higher photon-number states is realized, using an optical time-multiplexing setting that exploits a parametric down-conversion source for an…

quant-ph20214 cited

Mitigating linear optics imperfections via port allocation and compilation

Shreya P. Kumar, Leonhard Neuhaus, Lukas G. Helt +4

Linear optics is a promising route to building quantum technologies that operate at room temperature and can be manufactured scalably on integrated photonic platforms. However, sca…

quant-ph2021551 cited

Quantum circuits with many photons on a programmable nanophotonic chip

J. M. Arrazola, V. Bergholm, K. Brádler +36

Growing interest in quantum computing for practical applications has led to a surge in the availability of programmable machines for executing quantum algorithms. Present day photo…

quant-ph2020

Blueprint for a Scalable Photonic Fault-Tolerant Quantum Computer

J. Eli Bourassa, Rafael N. Alexander, Michael Vasmer +10

Photonics is the platform of choice to build a modular, easy-to-network quantum computer operating at room temperature. However, no concrete architecture has been presented so far…

quant-ph2020

Quantum photonics with active feedback loops

M. Engelkemeier, L. Lorz, Syamsundar De +5

We develop a unified theoretical framework for the efficient description of multiphoton states generated and propagating in loop-based optical networks which contain nonlinear elem…

quant-ph20201 cited

Optimal modular architectures for universal linear optics

Shreya P. Kumar, Ish Dhand

We present modular and optimal architectures for implementing arbitrary discrete unitary transformations on light. These architectures are based on systematically combining smaller…