We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres by modulating the laser emission at a mechanical eigenfrequency. To this aim, 1.5% Nd3+: Barium-Titanium-Silicate microspheres with diameters around 50 mu m were used as high quality factor ( Q>10(6)) whispering gallery mode lasing cavities. We have implemented a pump-and-probe technique in which the pump laser used to excite the Nd3+ ions is focused on a single microsphere with a microscope objective and a probe laser excites a specific optical mode with the evanescent field of a tapered fibre. The studied microspheres show monomode and multi-mode lasing action, which can be modulated in the best case up to 10 MHz. We have optically tran...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Microsphere resonators with sizes in the micrometer range are reported to support very high Q’s of m...
The work was sponsored by the German Ministry of Education and Research (BMBF) within the RELQUSA pr...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
Quantitative measurements of the vibrational eigenmodes in ultra-high-Q silica microspheres are repo...
Microcavities can enter a regime where radiation pressure causes oscillation of mechanical cavity ei...
This work reports the dynamical thermal behavior of lasing microspheres placed on a dielectric subst...
This work reports the dynamical thermal behavior of lasing microspheres placed on a dielectric subst...
This thesis is devoted to microcavities based on the very high Q whispering gallery modes of silica ...
This work reports the dynamical thermal behavior of lasing microspheres placed on a dielectric subst...
This is the preprint version of the paper available at: https://dx.doi.org/10.1063/1.4997182 A. Ton...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Microsphere resonators with sizes in the micrometer range are reported to support very high Q’s of m...
The work was sponsored by the German Ministry of Education and Research (BMBF) within the RELQUSA pr...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
Quantitative measurements of the vibrational eigenmodes in ultra-high-Q silica microspheres are repo...
Microcavities can enter a regime where radiation pressure causes oscillation of mechanical cavity ei...
This work reports the dynamical thermal behavior of lasing microspheres placed on a dielectric subst...
This work reports the dynamical thermal behavior of lasing microspheres placed on a dielectric subst...
This thesis is devoted to microcavities based on the very high Q whispering gallery modes of silica ...
This work reports the dynamical thermal behavior of lasing microspheres placed on a dielectric subst...
This is the preprint version of the paper available at: https://dx.doi.org/10.1063/1.4997182 A. Ton...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Microsphere resonators with sizes in the micrometer range are reported to support very high Q’s of m...
The work was sponsored by the German Ministry of Education and Research (BMBF) within the RELQUSA pr...