activity
20122020
most citedIn-trap fluorescence detection of atoms in a microscopic dipole trap

13 citations · 14 across the 2 of their papers we have counts for

collaborators

5 papers

cond-mat.quant-gas2020

Robust Bilayer Charge-Pumping for Spin- and Density-Resolved Quantum Gas Microscopy

Joannis Koepsell, Sarah Hirthe, Dominik Bourgund +5

Quantum gas microscopy has emerged as a powerful new way to probe quantum many-body systems at the microscopic level. However, layered or efficient spin-resolved readout methods ha…

cond-mat.quant-gas2019

Time-Resolved Observation of Spin-Charge Deconfinement in Fermionic Hubbard Chains

Jayadev Vijayan, Pimonpan Sompet, Guillaume Salomon +6

Elementary particles such as the electron carry several quantum numbers, for example, charge and spin. However, in an ensemble of strongly interacting particles, the emerging degre…

cond-mat.quant-gas2018

Imaging magnetic polarons in the doped Fermi-Hubbard model

Joannis Koepsell, Jayadev Vijayan, Pimonpan Sompet +6

Polarons are among the most fundamental quasiparticles emerging in interacting many-body systems, forming already at the level of a single mobile dopant. In the context of the two-…

physics.atom-ph201513 cited

In-trap fluorescence detection of atoms in a microscopic dipole trap

A. J. Hilliard, Y. H. Fung, P. Sompet +2

We investigate fluorescence detection using a standing wave of blue-detuned light of one or more atoms held in a deep, microscopic dipole trap. The blue-detuned standing wave reali…

physics.atom-ph20121 cited

High efficiency preparation of single trapped atoms using blue detuned light assisted collisions

A. V. Carpentier, Y. H. Fung, P. Sompet +3

We report on a procedure by which we obtain a 91% loading efficiency of single 85Rb atoms in an optical microtrap. This can be achieved within a total preparation time of 542 ms. W…