activity
20162019
most citedCold Damping of an Optically Levitated Nanoparticle to micro-Kelvin Temperatures

174 citations · 301 across the 2 of their papers we have counts for

collaborators

5 papers

physics.optics2019

Motional Sideband Asymmetry of a Nanoparticle Optically Levitated in Free Space

Felix Tebbenjohanns, Martin Frimmer, Vijay Jain +2

The hallmark of quantum physics is Planck's constant , whose finite value entails the quantization that gave the theory its name. The finite value of gives rise to inevitabl…

quant-ph2019

Resolved Sideband Cooling of a Levitated Nanoparticle in the Presence of Laser Phase Noise

Nadine Meyer, Andres de los Rios Sommer, Pau Mestres +4

We investigate the influence of laser phase noise heating on resolved sideband cooling in the context of cooling the center-of-mass motion of a levitated nanoparticle in a high-fin…

physics.optics2018174 cited

Cold Damping of an Optically Levitated Nanoparticle to micro-Kelvin Temperatures

Felix Tebbenjohanns, Martin Frimmer, Andrei Militaru +2

We implement a cold damping scheme to cool one mode of the center-of-mass motion of an optically levitated nanoparticle in ultrahigh vacuum from room temperature to a record-low te…

physics.optics2017127 cited

Controlling the net charge on a nanoparticle optically levitated in vacuum

Martin Frimmer, Karol Luszcz, Sandra Ferreiro +3

Optically levitated nanoparticles in vacuum are a promising model system to test physics beyond our current understanding of quantum mechanics. Such experimental tests require extr…

physics.optics2016

Direct Measurement of Photon Recoil from a Levitated Nanoparticle

Vijay Jain, Jan Gieseler, Clemens Moritz +3

The momentum transfer between a photon and an object defines a fundamental limit for the precision with which the object can be measured. If the object oscillates at a frequency $Ω…