Control of molecular rotation in helium nanodroplets with an optical centrifuge

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Hauptverfasser: MacPhail-Bartley, Ian, Milner, Alexander A., Stienkemeier, Frank, Milner, Valery
Format: Preprint
Veröffentlicht: 2025
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author MacPhail-Bartley, Ian
Milner, Alexander A.
Stienkemeier, Frank
Milner, Valery
author_facet MacPhail-Bartley, Ian
Milner, Alexander A.
Stienkemeier, Frank
Milner, Valery
contents We experimentally demonstrate that the rotation of molecules embedded in helium nanodroplets can be controlled with an optical centrifuge, allowing for the study of molecular dynamics inside the strongly interacting many-body environment of superfluid helium at variable levels of rotational excitation. By doping the droplets with dimers of nitric oxide, (NO)$_2$, and measuring the degree of their centrifuge-induced alignment as a function of time, we show both the forced in-field rotation of molecules in a continuous range of frequencies, as well as the field-free resonant rotation with a long nanosecond-scale decay. The ability to control and monitor the rotational dynamics of molecular rotors inside the superfluid medium may shed new light on superfluidity and the interaction of superfluids with defects at the atomic level.
format Preprint
id arxiv_https___arxiv_org_abs_2509_02913
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Control of molecular rotation in helium nanodroplets with an optical centrifuge
MacPhail-Bartley, Ian
Milner, Alexander A.
Stienkemeier, Frank
Milner, Valery
Quantum Physics
We experimentally demonstrate that the rotation of molecules embedded in helium nanodroplets can be controlled with an optical centrifuge, allowing for the study of molecular dynamics inside the strongly interacting many-body environment of superfluid helium at variable levels of rotational excitation. By doping the droplets with dimers of nitric oxide, (NO)$_2$, and measuring the degree of their centrifuge-induced alignment as a function of time, we show both the forced in-field rotation of molecules in a continuous range of frequencies, as well as the field-free resonant rotation with a long nanosecond-scale decay. The ability to control and monitor the rotational dynamics of molecular rotors inside the superfluid medium may shed new light on superfluidity and the interaction of superfluids with defects at the atomic level.
title Control of molecular rotation in helium nanodroplets with an optical centrifuge
topic Quantum Physics
url https://arxiv.org/abs/2509.02913