collaborators

6 papers

quant-ph2026

Collective Quantum Logic Spectroscopy

Raphael Kaubruegger, Matthew Patkowski, Yicheng Zhang +3

Scaling trapped-ion quantum sensors from single ions to large ensembles is a key challenge for next-generation precision measurements. At the same time, many ion species of interes…

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

Lieb-Mattis states for robust entangled differential phase sensing

Raphael Kaubruegger, Diego Fallas Padilla, Athreya Shankar +10

We explore a two-node, entanglement-enhanced sensor network for differential phase sensing that exploits decoherence-free subspaces to suppress common-mode noise, a primary limitat…

quant-ph2026

Generating Entangled Steady States in Multistable Open Quantum Systems via Initial State Control

Diego Fallas Padilla, Raphael Kaubruegger, Adrianna Gillman +2

Entanglement underpins the power of quantum technologies, yet it is fragile and typically destroyed by dissipation. Paradoxically, the same dissipation, when carefully engineered,…

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

Time complexity in preparing metrologically useful quantum states

Carla M. Quispe Flores, Raphael Kaubruegger, Minh C. Tran +3

We investigate the fundamental time complexity, as constrained by Lieb-Robinson bounds, for preparing entangled states useful in quantum metrology. We relate the minimum time to th…