<div class="csl-bib-body">
<div class="csl-entry">Hüpfl, J., Bachelard, N., Kaczvinszki, M., Horodynski, M., Kühmayer, M., & Rotter, S. (2022). Cooling levitated mesoscopic particles through wave-front shaping in the far-field. In <i>Complex Nanophotonics Science Camp</i> (pp. 28–28). http://hdl.handle.net/20.500.12708/194728</div>
</div>
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/194728
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dc.description.abstract
Particles on the nano- to micrometer scale can be levitated and cooled down towards their motional ground state using optical forces [1]. A major challenge in the field of levitation consists in extending the methods to many particles. This would allow for the entanglement of mesoscopic objects or could provide a platform to test many-body quantum effects at the mesoscale. Indeed, a significant roadblock so far has been the requirement to monitor the particles' many degrees of freedom simultaneously and to engineer complex light fields to respond to their motion in real time. Here[2,3], we solve both of these problems by introducing and computationally verifying a novel multi-particle cooling approach using a generalization of the Wigner-Smith time-delay operator [4-6]. For macroscopic electromagnetic fields we connect the eigenvalues of this operator with the energy shift the corresponding fields induce in the particles. Through this, we can identify spatially modulated wave-fronts that can optimally counteract the motion of multiple particles in parallel. Remarkably, our approach only uses far-field information and decouples the degrees of freedom of the light field from those of the particles, naturally leading to good scaling properties. We can thus propose an experimental implementation, where wave-fronts are constructed in real time to cool an ensemble of levitated objects.
[1] U. Delić, M. Reisenbauer, K. Dare, D. Grass, V. Vuletić, N. Kiesel, M. Aspelmeyer, Science 367, 892(2020).
[2] M. Kaczvinszki, N. Bachelard, J. Hüpfl, M. Horodynski, M. Kühmayer, S. Rotter, arXiv:2103.12592(under review at Physical Review Letters)
[3] J. Hüpfl, N. Bachelard, M. Kaczvinszki, M. Horodynski, M. Kühmayer, S. Rotter, Manuscript in preparation
[4] E. P. Wigner, Phys. Rev. 98, 145(1955).
[5] F. T. Smith, Phys. Rev. 118, 349(1960).
[6] M. Horodynski, M. Kühmayer, A. Brandstötter, K. Pichler, Y. V. Fyodorov, U. Kuhl, S. Rotter, Nature Photonics 14, 149(2020).
en
dc.language.iso
en
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dc.subject
Optomechanics
en
dc.title
Cooling levitated mesoscopic particles through wave-front shaping in the far-field
en
dc.type
Inproceedings
en
dc.type
Konferenzbeitrag
de
dc.contributor.affiliation
Massachusetts Institute of Technology, United States of America (the)
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dc.description.startpage
28
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dc.description.endpage
28
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dc.type.category
Abstract Book Contribution
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tuw.booktitle
Complex Nanophotonics Science Camp
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tuw.researchTopic.id
Q1
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tuw.researchTopic.name
Photonics
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tuw.researchTopic.value
100
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tuw.publication.orgunit
E136 - Institut für Theoretische Physik
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tuw.publication.orgunit
E322-01 - Forschungsbereich Strömungsmechanik
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dc.description.numberOfPages
1
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tuw.author.orcid
0000-0002-2953-5872
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tuw.author.orcid
0000-0003-4893-987X
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tuw.author.orcid
0000-0002-4123-1417
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tuw.event.name
Complex Nanophotonics Science Camp 2022
en
tuw.event.startdate
02-08-2022
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tuw.event.enddate
05-08-2022
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tuw.event.online
On Site
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tuw.event.type
Event for scientific audience
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tuw.event.place
Berkshire
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tuw.event.country
GB
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tuw.event.presenter
Hüpfl, Jakob
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wb.sciencebranch
Physik, Astronomie
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wb.sciencebranch.oefos
1030
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wb.sciencebranch.value
100
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item.languageiso639-1
en
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item.openairetype
conference paper
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item.openairecristype
http://purl.org/coar/resource_type/c_5794
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item.grantfulltext
none
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item.cerifentitytype
Publications
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item.fulltext
no Fulltext
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crisitem.author.dept
E136 - Institut für Theoretische Physik
-
crisitem.author.dept
E136 - Institut für Theoretische Physik
-
crisitem.author.dept
E322-01 - Forschungsbereich Strömungsmechanik
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crisitem.author.dept
E387-01 - Forschungsbereich Photonik
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crisitem.author.dept
E136 - Institut für Theoretische Physik
-
crisitem.author.dept
E136 - Institut für Theoretische Physik
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crisitem.author.orcid
0000-0002-2953-5872
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crisitem.author.orcid
0000-0002-4123-1417
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crisitem.author.parentorg
E130 - Fakultät für Physik
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crisitem.author.parentorg
E130 - Fakultät für Physik
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crisitem.author.parentorg
E322 - Institut für Strömungsmechanik und Wärmeübertragung