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20192026
most citedRotational Coherence Times of Polar Molecules in Optical Tweezers

89 citations · 123 across the 7 of their papers we have counts for

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physics.atom-ph2026

High-fidelity entanglement of polar molecules by dynamic geometric control

Scarlett S. Yu, Avikar Periwal, Jiaqi You +6

In quantum information systems made of optical tweezer arrays of ultracold molecules, thermal motion of molecules degrades the coherence of their interactions, which limits entangl…

physics.atom-ph2024

A conveyor-belt magneto-optical trap of CaF

Scarlett S. Yu, Jiaqi You, Yicheng Bao +8

We report the experimental realization of a conveyor-belt magneto-optical trap for calcium monofluoride (CaF) molecules. The obtained highly-compressed cloud has a mean radius of 6…

physics.atom-ph20233 cited

Raman sideband cooling of molecules in an optical tweezer array to the 3-D motional ground state

Yicheng Bao, Scarlett S. Yu, Jiaqi You +5

Ultracold polar molecules are promising for quantum information processing and searches for physics beyond the Standard Model. Laser cooling to ultracold temperatures is an establi…

physics.atom-ph202213 cited

Dipolar spin-exchange and entanglement between molecules in an optical tweezer array

Yicheng Bao, Scarlett S. Yu, Loïc Anderegg +4

Due to their intrinsic electric dipole moments and rich internal structure, ultracold polar molecules are promising candidate qubits for quantum computing and for a wide range of q…

physics.atom-ph202189 cited

Rotational Coherence Times of Polar Molecules in Optical Tweezers

Sean Burchesky, Loic Anderegg, Yicheng Bao +5

Qubit coherence times are critical to the performance of any robust quantum computing platform. For quantum information processing using arrays of polar molecules, a key performanc…

physics.atom-ph2021

Observation of Microwave Shielding of Ultracold Molecules

Loïc Anderegg, Sean Burchesky, Yicheng Bao +6

Harnessing the potential wide-ranging quantum science applications of molecules will require control of their interactions. Here, we use microwave radiation to directly engineer an…