Coupled Optical Resonances in a Dielectric Microsphere: Physical Concept of a Miniature Optical Pressure Sensor; Atmospheric and Oceanic Optics; Vol. 35, No. 6

Dades bibliogràfiques
Parent link:Atmospheric and Oceanic Optics
Vol. 35, No. 6.— 2022.— [P. 802-810]
Autor principal: Geints Yu. E.
Autor corporatiu: Национальный исследовательский Томский политехнический университет Инженерная школа неразрушающего контроля и безопасности Отделение электронной инженерии
Altres autors: Minin I. V. Igor Vladilenovich, Minin O. V. Oleg Vladilenovich
Sumari:Title screen
Optical resonance of the internal field of a dielectric microparticle occurs when the frequency of the incident light wave is tuned to the frequency of one of the particle spatial eigenmodes and leads to a sharp increase in the intensity and localization of the field near the surface with the formation of annular-periodic structures in the form of standing waves, the so-called “whispering gallery” modes (WGMs). We theoretically consider the case where a dielectric microsphere is placed near a flexible light reflecting membrane which acts as an external pressure sensor. In this case, due to reflection from the reflecting membrane, the WGMs of the sphere are excited twice by direct and backward reflected radiation which then couples within the microparticle volume. The optical intensity of the resulting WGM field carries information about the position of the flexible loaded membrane. This allows one to propose a physical concept of a new miniature all-optical pressure sensor. It is shown that the pressure sensitivity of such a sensor depends on the Q factor of the excited resonance mode, as well as on the geometrical and mechanical parameters of the flexible membrane. Important advantages of the sensor proposed are the miniature design (the size of the sensor is determined by the diameter of the flexible membrane) and the noncontact type of the pressure sensor placement.
Режим доступа: по договору с организацией-держателем ресурса
Idioma:anglès
Publicat: 2022
Matèries:
Accés en línia:https://doi.org/10.1134/S1024856022060112
Format: Electrònic Capítol de llibre
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=668730

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330 |a Optical resonance of the internal field of a dielectric microparticle occurs when the frequency of the incident light wave is tuned to the frequency of one of the particle spatial eigenmodes and leads to a sharp increase in the intensity and localization of the field near the surface with the formation of annular-periodic structures in the form of standing waves, the so-called “whispering gallery” modes (WGMs). We theoretically consider the case where a dielectric microsphere is placed near a flexible light reflecting membrane which acts as an external pressure sensor. In this case, due to reflection from the reflecting membrane, the WGMs of the sphere are excited twice by direct and backward reflected radiation which then couples within the microparticle volume. The optical intensity of the resulting WGM field carries information about the position of the flexible loaded membrane. This allows one to propose a physical concept of a new miniature all-optical pressure sensor. It is shown that the pressure sensitivity of such a sensor depends on the Q factor of the excited resonance mode, as well as on the geometrical and mechanical parameters of the flexible membrane. Important advantages of the sensor proposed are the miniature design (the size of the sensor is determined by the diameter of the flexible membrane) and the noncontact type of the pressure sensor placement. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t Atmospheric and Oceanic Optics 
463 |t Vol. 35, No. 6  |v [P. 802-810]  |d 2022 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a optical resonance 
610 1 |a optical pressure sensor 
610 1 |a whispering gallery modes 
610 1 |a wave reflection 
610 1 |a optical wave interference 
610 1 |a mesowavelength particle 
700 1 |a Geints  |b Yu. E. 
701 1 |a Minin  |b I. V.  |c physicist  |c Professor of Tomsk Polytechnic University, Doctor of technical sciences  |f 1960-  |g Igor Vladilenovich  |3 (RuTPU)RU\TPU\pers\37571 
701 1 |a Minin  |b O. V.  |c physicist  |c professor of Tomsk Polytechnic University, Doctor of technical sciences  |f 1960-  |g Oleg Vladilenovich  |3 (RuTPU)RU\TPU\pers\44941 
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