Non-destructive cavity readout of molecules for precision measurements

Fuente: arXiv
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Autori principali: Salas-Estrada, Alejandro, Udrescu, Silviu-Marian, Zheng, Geoffrey, Wang, Qian, Jadbabaie, Arian, Vuletić, Vladan, DeMille, David, Ruiz, Ronald F. Garcia, Pedrozo-Peñafiel, Edwin
Natura: Preprint
Pubblicazione: 2026
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author Salas-Estrada, Alejandro
Udrescu, Silviu-Marian
Zheng, Geoffrey
Wang, Qian
Jadbabaie, Arian
Vuletić, Vladan
DeMille, David
Ruiz, Ronald F. Garcia
Pedrozo-Peñafiel, Edwin
author_facet Salas-Estrada, Alejandro
Udrescu, Silviu-Marian
Zheng, Geoffrey
Wang, Qian
Jadbabaie, Arian
Vuletić, Vladan
DeMille, David
Ruiz, Ronald F. Garcia
Pedrozo-Peñafiel, Edwin
contents We propose a non-destructive method to measure the population of molecules in a selected rotational-hyperfine state by coupling them to a high-finesse optical cavity. In contrast to traditional techniques, our approach enables fast (less than 1 ms) repeated measurements with reduced heating and losses, and with precision below the standard quantum limit. The method is particularly advantageous for radioactive molecules, systems of high interest for symmetry violation searches, for which production and sample size are limited, and repeated interrogation is essential for improved sensitivity.
format Preprint
id arxiv_https___arxiv_org_abs_2606_01743
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Non-destructive cavity readout of molecules for precision measurements
Salas-Estrada, Alejandro
Udrescu, Silviu-Marian
Zheng, Geoffrey
Wang, Qian
Jadbabaie, Arian
Vuletić, Vladan
DeMille, David
Ruiz, Ronald F. Garcia
Pedrozo-Peñafiel, Edwin
Atomic Physics
Nuclear Experiment
Quantum Physics
We propose a non-destructive method to measure the population of molecules in a selected rotational-hyperfine state by coupling them to a high-finesse optical cavity. In contrast to traditional techniques, our approach enables fast (less than 1 ms) repeated measurements with reduced heating and losses, and with precision below the standard quantum limit. The method is particularly advantageous for radioactive molecules, systems of high interest for symmetry violation searches, for which production and sample size are limited, and repeated interrogation is essential for improved sensitivity.
title Non-destructive cavity readout of molecules for precision measurements
topic Atomic Physics
Nuclear Experiment
Quantum Physics
url https://arxiv.org/abs/2606.01743