International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamonds, we characterize the absorption of single nanodiamonds. We first calibrate the thermometry response of the NV centers embedded in our nanodiamonds. Then, using this calibration, we estimate the absorption cross-section of single levitated nanodiamonds. We show that this absorption is extrinsic and dominated by volumic effects. Our work opens the way to diamond material optimization for levitation quantum experiments. It also demonstrates optical levitation as a unique platform to characterize material thermal properties at the nanoparticle level
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
Avec les nombreuses applications des pinces optiques, le développement des parti-cules en lévitation...
Avec les nombreuses applications des pinces optiques, le développement des parti-cules en lévitation...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
Avec les nombreuses applications des pinces optiques, le développement des parti-cules en lévitation...
Avec les nombreuses applications des pinces optiques, le développement des parti-cules en lévitation...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
International audienceUsing the spin properties of nitrogen-vacancy (NV) centers in levitated diamon...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
Through the numerous applications of optical tweezers, the development of vacuum levitated particles...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
International audienceThe Brownian motion of a particle hotter than its environment is an iconic out...
Avec les nombreuses applications des pinces optiques, le développement des parti-cules en lévitation...
Avec les nombreuses applications des pinces optiques, le développement des parti-cules en lévitation...