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quant-ph2026

Motional Kerr-Cat States of an Atom in an Optical Tweezer

Steven K. Pampel, Gur Lubin, Dawson P. Hewatt +6

Schrödinger cat states - quantum superpositions of classically or macroscopically distinct states - constitute a powerful resource for quantum computing, enhanced metrology, and p…

quant-ph2026

High-throughput bidirectional electro-optic transduction assessed with a practical quantum capacity

M. D. Urmey, S. Dickson, K. Adachi +7

A microwave-optical transducer of sufficiently low noise and high signal transfer rate would allow entanglement to be distributed between superconducting quantum processors reliabl…

quant-ph2025

Hybrid qubit-oscillator module from motional states of two interacting atoms

Jaeyong Hwang, Tianrui Xu, Sean R. Muleady +7

We propose a qubit-oscillator platform based on the motional states of two interacting atoms in an optical tweezer. By stroboscopically modulating an engineered trap with tunable a…

quant-ph2025

Quantum control of continuous systems via nonharmonic potential modulation

Piotr T. Grochowski, Hannes Pichler, Cindy A. Regal +1

We present a theoretical proposal for preparing and manipulating a state of a single continuous-variable degree of freedom confined to a nonharmonic potential. By utilizing optimal…

quant-ph2024

Annealing reduces SiN microwave-frequency dielectric loss in superconducting resonators

Sarang Mittal, Kazemi Adachi, Nicholas E. Frattini +10

The dielectric loss of silicon nitride (SiN) limits the performance of microwave-frequency devices that rely on this material for sensing, signal processing, and quantum co…