activity
20122024
most citedOne-dimensional Fermi gas with a single impurity in a harmonic trap: Perturbative description of the upper branch

40 citations · 90 across the 7 of their papers we have counts for

collaborators

7 papers

cs.CV2024

A Black-Box Evaluation Framework for Semantic Robustness in Bird's Eye View Detection

Fu Wang, Yanghao Zhang, Xiangyu Yin +4

Camera-based Bird's Eye View (BEV) perception models receive increasing attention for their crucial role in autonomous driving, a domain where concerns about the robustness and rel…

cond-mat.quant-gas2016

Energy Cascade in Quantum Gases

Tin-Lun Ho, X. Y. Yin

Energy cascade is ubiquitous in systems far from equilibrium. Facilitated by particle interactions and external forces, it can lead to highly complex phenomena like fully developed…

cond-mat.quant-gas20166 cited

Dynamics of small trapped one-dimensional Fermi gas under oscillating magnetic fields

X. Y. Yin, Yangqian Yan, D. Hudson Smith

Deterministic preparation of an ultracold harmonically trapped one-dimensional Fermi gas consisting of a few fermions has been realized by the Heidelberg group. Using Floquet forma…

cond-mat.quant-gas201540 cited

One-dimensional Fermi gas with a single impurity in a harmonic trap: Perturbative description of the upper branch

Seyed Ebrahim Gharashi, X. Y. Yin, Yangqian Yan +1

The transition from "few to many" has recently been probed experimentally in an ultra cold harmonically confined one-dimensional lithium gas, in which a single impurity atom intera…

cond-mat.quant-gas201412 cited

Universal and non-universal effective -body interactions for ultracold harmonically-trapped few-atom systems

X. Y. Yin, D. Blume, P. R. Johnson +1

We derive the ground-state energy for a small number of ultracold atoms in an isotropic harmonic trap using effective quantum field theory (EFT). Atoms are assumed to interact thro…

cond-mat.quant-gas201417 cited

Energy spectrum of a harmonically trapped two-atom system with spin-orbit coupling

Q. Guan, X. Y. Yin, S. E. Gharashi +1

Ultracold atomic gases provide a novel platform with which to study spin-orbit coupling, a mechanism that plays a central role in the nuclear shell model, atomic fine structure and…