collaborators

6 papers

quant-ph2025

Observation of ballistic plasma and memory in high-energy gauge theory dynamics

Daniel K. Mark, Federica M. Surace, Thomas Schuster +4

Gauge theories describe the fundamental forces of nature. However, high-energy dynamics, such as the formation of quark-gluon plasmas, is notoriously difficult to model with classi…

quant-ph2025

Experimental signatures of Hilbert-space ergodicity: Universal bitstring distributions and applications in noise learning

Adam L. Shaw, Daniel K. Mark, Joonhee Choi +4

Systems reaching thermal equilibrium are ubiquitous. For classical systems, this phenomenon is typically understood statistically through ergodicity in phase space, but translating…

quant-ph2025

Erasure-cooling, control, and hyper-entanglement of motion in optical tweezers

Adam L. Shaw, Pascal Scholl, Ran Finkelstein +3

Coherently controlling the motion of single atoms in optical tweezers would enable new applications in quantum information science. To demonstrate this, we first prepare atoms in t…

quant-ph2025

Optimal Conversion from Classical to Quantum Randomness via Quantum Chaos

Wai-Keong Mok, Tobias Haug, Adam L. Shaw +2

Quantum many-body systems provide a unique platform for exploring the rich interplay between chaos, randomness, and complexity. In a recently proposed paradigm known as deep therma…

quant-ph2024

Benchmarking and fidelity response theory of high-fidelity Rydberg entangling gates

Richard Bing-Shiun Tsai, Xiangkai Sun, Adam L. Shaw +2

The fidelity of entangling operations is a key figure of merit in quantum information processing, especially in the context of quantum error correction. High-fidelity entangling ga…

quant-ph2024

Universal quantum operations and ancilla-based readout for tweezer clocks

Ran Finkelstein, Richard Bing-Shiun Tsai, Xiangkai Sun +6

Enhancing the precision of measurements by harnessing entanglement is a long-sought goal in the field of quantum metrology. Yet attaining the best sensitivity allowed by quantum th…