activity
20162023
most citedSpatial coherence of spin-orbit-coupled Bose gases

76 citations · 113 across the 5 of their papers we have counts for

collaborators

8 papers

quant-ph2023★ 18 cited

Vacuum Beam Guide for Large-Scale Quantum Networks

Yuexun Huang, Francisco Salces--Carcoba, Rana X Adhikari +2

The vacuum beam guide (VBG) presents a completely different solution for quantum channels to overcome the limitations of existing fiber and satellite technologies for long-distance…

astro-ph.IM2023★ 9 cited

Effects of mirror birefringence and its fluctuations to laser interferometric gravitational wave detectors

Yuta Michimura, Haoyu Wang, Francisco Salces-Carcoba +4

Crystalline materials are promising candidates as substrates or high-reflective coatings of mirrors to reduce thermal noises in future laser interferometric gravitational wave dete…

physics.optics2021★ 5 cited

Global optimization of multilayer dielectric coatings for precision measurements

Gautam Venugopalan, Francisco Salces-Cárcoba, Koji Arai +1

We describe the design of optimized multilayer dielectric coatings for precision laser interferometry. By setting up an appropriate cost function and then using a global optimizer…

cond-mat.quant-gas2021★ 5 cited

Multiple-camera defocus imaging of ultracold atomic gases

A. R. Perry, S. Sugawa, F. Salces-Carcoba +2

In cold atom experiments, each image of light refracted and absorbed by an atomic ensemble carries a remarkable amount of information. Numerous imaging techniques including absorpt…

cond-mat.quant-gas2019★ 76 cited

Spatial coherence of spin-orbit-coupled Bose gases

Andika Putra, F. Salces-Cárcoba, Yuchen Yue +2

Spin-orbit-coupled Bose-Einstein condensates (SOBECs) exhibit two new phases of matter, now known as the stripe and plane-wave phases. When two interacting spin components of a SOB…

physics.atom-ph2019

Wilson loop and Wilczek-Zee phase from a non-Abelian gauge field

Seiji Sugawa, Francisco Salces-Carcoba, Yuchen Yue +2

Quantum states can acquire a geometric phase called the Berry phase after adiabatically traversing a closed loop, which depends on the path not the rate of motion. The Berry phase…