activity
20222026
most citedEntangling microwaves with optical light

94 citations · 125 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph2026

Single-atom-based asynchronous photonic interconnect for scalable modular quantum computing

Jérémy Raskop, Nadav Kandel, Geva Arwas +6

Scaling quantum computation beyond the capacity of a single quantum processing unit requires quantum interconnects between modular processors. Optical photons are natural carriers…

quant-ph2026

Electro-optic conversion of itinerant Fock states

Thomas Werner, Erfan Riyazi, Samarth Hawaldar +10

Superconducting qubits are a leading candidate for utility-scale quantum computing due to their fast gate speeds and steadily decreasing error rates. The requirement for millikelvi…

physics.optics2026

Kerr-enhanced amplification of three-wave mixing and emergent masing regimes

Ragheed Alhyder, Rishabh Sahu, Johannes M. Fink +2

Integrated optical microresonators exploiting either second-order () or third-order () nonlinearities have become key platforms for frequency conversion, low-nois…

quant-ph2023★ 29 cited

All-optical single-shot readout of a superconducting qubit

Georg Arnold, Thomas Werner, Rishabh Sahu +3

The rapid development of superconducting quantum hardware is expected to run into significant I/O restrictions due to the need for large-scale error correction in a cryogenic envir…

quant-ph2023★ 94 cited

Entangling microwaves with optical light

Rishabh Sahu, Liu Qiu, William Hease +4

Entanglement is a genuine quantum mechanical property and the key resource in currently developed quantum technologies. Sharing this fragile property between superconducting microw…

quant-ph2022★ 2 cited

Emergent macroscopic bistability induced by a single superconducting qubit

R. Sett, F. Hassani, D. Phan +3

The photon blockade breakdown in a continuously driven cavity QED system has been proposed as a prime example for a first-order driven-dissipative quantum phase transition. But the…