Zhen Shen Shen Experimental Research of Cavity Optomechanics

Experimental Research of Cavity Optomechanics

von Zhen Shen

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Beschreibung

This thesis presents experimental research on the interaction between the optical field and the mechanical oscillator in whispering-gallery mode microcavities. It demonstrates how optomechanical interactions in a microresonator can be used to achieve non-magnetic non-reciprocity and develop all-optically controlled non-reciprocal multifunctional photonic devices. The thesis also discusses the interaction between the travelling optical and mechanical whispering-gallery modes, paving the way for non-reciprocal light storage as a coherent, circulating acoustic wave with a lifetime of up to tens of microseconds. Lastly, the thesis presents a high-frequency phase-sensitive heterodyne vibrometer, operating up to 10 GHz, which can be used for the high-resolution, non-invasive mapping of the vibration patterns of acoustic devices. The results presented here show that optomechanical devices hold great potential in the field of information processing.


This thesis presents experimental research on the interaction between the optical field and the mechanical oscillator in whispering-gallery mode microcavities. It demonstrates how optomechanical interactions in a microresonator can be used to achieve non-magnetic non-reciprocity and develop all-optically controlled non-reciprocal multifunctional photonic devices. The thesis also discusses the interaction between the travelling optical and mechanical whispering-gallery modes, paving the way for non-reciprocal light storage as a coherent, circulating acoustic wave with a lifetime of up to tens of microseconds. Lastly, the thesis presents a high-frequency phase-sensitive heterodyne vibrometer, operating up to 10 GHz, which can be used for the high-resolution, non-invasive mapping of the vibration patterns of acoustic devices. The results presented here show that optomechanical devices hold great potential in the field of information processing.


Nominated as an outstanding Ph.D. thesis by the University of Science and Technology of China Demonstrates optomechanically induced non-reciprocity Elaborates on how to create non-reciprocal multifunctional photonic devices Successfully demonstrates Brillouin-scattering-induced transparency and non-reciprocal light storage

Autor*in

Zhen Shen

Themen in »Experimental Research of Cavity Optomechanics«

Whispering-gallery mode cavity optomechancis non-reciprocal devices Brillouin scattering light storage mechanical oscillator high frequency vibrometer microcavity package

Stimmen zu »Experimental Research of Cavity Optomechanics«

Details

ISBN: 9789813344570
Verlag: Springer Singapore
Erscheinung: 13.01.2021

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