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Experimental Research of Cavity Optomechanics 2021 ed. [Minkštas viršelis]

  • Formatas: Paperback / softback, 102 pages, aukštis x plotis: 235x155 mm, weight: 191 g, 55 Illustrations, color; 1 Illustrations, black and white; XIV, 102 p. 56 illus., 55 illus. in color., 1 Paperback / softback
  • Serija: Springer Theses
  • Išleidimo metai: 13-Jan-2022
  • Leidėjas: Springer Verlag, Singapore
  • ISBN-10: 9813344601
  • ISBN-13: 9789813344600
Kitos knygos pagal šią temą:
  • Formatas: Paperback / softback, 102 pages, aukštis x plotis: 235x155 mm, weight: 191 g, 55 Illustrations, color; 1 Illustrations, black and white; XIV, 102 p. 56 illus., 55 illus. in color., 1 Paperback / softback
  • Serija: Springer Theses
  • Išleidimo metai: 13-Jan-2022
  • Leidėjas: Springer Verlag, Singapore
  • ISBN-10: 9813344601
  • ISBN-13: 9789813344600
Kitos knygos pagal šią temą:

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.

Introduction.- Whispering-gallery modes microcavity.- Optomechanical interaction.- Optomechanically induced non-reciprocity.- Brillouin-scattering-induced transparency and non-reciprocal light storage.- Packaged optomechanical microresonator.- sensitive imaging of vibrational mode.- Conclusion.

Dr. Zhen Shen received his Ph.D. from the University of Science and Technology of China, Hefei in 2017, under the supervision of Prof. Chun-Hua Dong. His research chiefly focuses on micro/nano optics, microcavities and optomechanics.