V. L. Vasyuk; Andriy V. Kalashnikov; Victor V. Protsyuk; Yu. A. Ushenko; Alexander V. Dubolazov; A. G. Ushenko; Jun Zheng Springer Verlag, Singapore (2023) Pehmeäkantinen kirja
Zhong-Shan Gao; Hua-Hao Shen; Min Zheng; Lynn J. Frewer; Luud J. W. J. Gilissen Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2013) Kovakantinen kirja
Zhengbin Hu; I.L. Bezhenar; O.Y. Vanchulyak; A. G. Ushenko; Yu. A. Ushenko; Mykhailo P. Gorsky; Igor Meglinski Springer Verlag, Singapore (2023) Pehmeäkantinen kirja
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.