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quant-ph2026

Beyond Photon Shot Noise: Chemical Limits in Spectrophotometric Precision

Georg Engelhardt, Dahai He, JunYan Luo

In this work, we investigate precision limitations in spectrophotometry (i.e., spectroscopic concentration measurements) imposed by chemical processes of molecules. Using the recen…

quant-ph2026

Heisenberg scaling in optical magnetometry with measurement-induced correlations as a quantum resource

Georg Engelhardt, Ming Li, Xingchang Wang +2

Theoretical proposals to reach the Heisenberg scaling of the measurement precision typically require carefully engineered interactions or initial entanglement. In studying optical…

quant-ph2025

Full-counting statistics and quantum information of dispersive readout with a squeezed environment

Ming Li, JunYan Luo, Gloria Platero +1

Motivated by the importance of dispersive readout in quantum technology, we study a prototypical dispersive readout setup that is probed by a squeezed vacuum in a time-reversal-sym…

quant-ph2025

Photon-resolved Floquet theory approach to spectroscopic quantum sensing

Georg Engelhardt, Konstantin Dorfman, Zhedong Zhang

Spectroscopic methods play a vital role in quantum sensing, which uses the quantized nature of atoms or molecules to reach astonishing precision for sensing of, e.g., electric or m…

quant-ph2024

Photon-resolved Floquet theory II: Open quantum systems

G. Engelhardt, JunYan Luo, V. M. Bastidas +1

Photon-resolved Floquet theory keeps track of the photon exchange of a quantum system with a coherent driving field. It thus complements the standard full-counting statistics that…

quant-ph2024

Photon-resolved Floquet theory I: Full-Counting statistics of the driving field in Floquet systems

Georg Engelhardt, JunYan Luo, Victor M. Bastidas +1

Floquet theory and other established semiclassical approaches are widely used methods to predict the state of externally-driven quantum systems, yet, they do not allow to predict t…