activity
20212026
most citedQuantized topological phases beyond square lattices in Floquet synthetic dimensions

4 citations · 6 across the 8 of their papers we have counts for

collaborators
Showing physics.opticsShow all

5 papers · 1 filter

physics.optics2025

Toward Chaotic Group Velocity Hopping of an On-Chip Dissipative Kerr Soliton

Gregory Moille, Sashank Kaushik Sridhar, Pradyoth Shandilya +3

Chaos enables randomness-based applications, particularly in photonic systems. Integrated optical frequency combs (microcombs) have previously been observed in either chaotic modul…

physics.optics2025

Measuring invariants in dimer models and cross-coupled ladders with a programmable photonic molecule

Sashank Kaushik Sridhar, Rohith Srikanth, Alexander R. Miller +2

Topological models are characterized by a quantized topological invariant and provide a description of novel phases of matter that can exhibit localized edge states, corner modes,…

physics.optics20252 cited

Highly squeezed nanophotonic quantum microcombs with broadband frequency tunability

Yichen Shen, Ping-Yen Hsieh, Dhruv Srinivasan +8

Squeezed light offers genuine quantum advantage in enhanced sensing and quantum computation; yet the level of squeezing or quantum noise reduction generated from nanophotonic chips…

physics.optics2025

A comprehensive review on developments of synthetic dimensions

Danying Yu, Wange Song, Luojia Wang +14

The concept of synthetic dimensions has emerged as a powerful framework in photonics and atomic physics, enabling the exploration of high-dimensional physics beyond conventional sp…

physics.optics2024

Strong nanophotonic quantum squeezing exceeding 3.5 dB in a foundry-compatible Kerr microresonator

Yichen Shen, Ping-Yen Hsieh, Sashank Kaushik Sridhar +4

Squeezed light, with its quantum noise reduction capabilities, has emerged as a powerful resource in quantum information processing and precision metrology. To reach noise reductio…