activity
20182020
most citedSingle-exposure absorption imaging of ultracold atoms using deep learning

29 citations · 37 across the 2 of their papers we have counts for

collaborators

5 papers

cond-mat.quant-gas202029 cited

Single-exposure absorption imaging of ultracold atoms using deep learning

Gal Ness, Anastasiya Vainbaum, Constantine Shkedrov +2

Absorption imaging is the most common probing technique in experiments with ultracold atoms. The standard procedure involves the division of two frames acquired at successive expos…

cond-mat.quant-gas2020

Observation of a smooth polaron-molecule transition in a degenerate Fermi gas

Gal Ness, Constantine Shkedrov, Yanay Florshaim +4

Understanding the behavior of an impurity strongly interacting with a Fermi sea is a long-standing challenge in many-body physics. When the interactions are short-ranged, two vastl…

cond-mat.quant-gas20198 cited

In Situ Momentum Distribution Measurement of a Quantum Degenerate Fermi Gas using Raman Spectroscopy

Constantine Shkedrov, Gal Ness, Yanay Florshaim +1

The ability to directly measure the momentum distribution of quantum gases is both unique to these systems and pivotal in extracting many other important observables. Here we use R…

quant-ph2018

Realistic Shortcuts to Adiabaticity in Optical Transfer

Gal Ness, Constantine Shkedrov, Yanay Florshaim +1

Shortcuts to adiabaticity (STA) are techniques allowing rapid variation of the system Hamiltonian without inducing excess heating. Fast optical transfer of atoms between different…

cond-mat.quant-gas2018

High Sensitivity RF Spectroscopy of a Strongly-Interacting Fermi Gas

Constantine Shkedrov, Yanay Florshaim, Gal Ness +2

Rf spectroscopy is one of the most powerful probing techniques in the field of ultracold gases. We report on a novel rf spectroscopy scheme with which we can detect very weak signa…