Literature DB >> 28060436

Single Nanoparticle Detection Using Optical Microcavities.

Yanyan Zhi1,2, Xiao-Chong Yu1,2, Qihuang Gong1,2,3, Lan Yang4, Yun-Feng Xiao1,2,3.   

Abstract

Detection of nanoscale objects is highly desirable in various fields such as early-stage disease diagnosis, environmental monitoring and homeland security. Optical microcavity sensors are renowned for ultrahigh sensitivities due to strongly enhanced light-matter interaction. This review focuses on single nanoparticle detection using optical whispering gallery microcavities and photonic crystal microcavities, both of which have been developing rapidly over the past few years. The reactive and dissipative sensing methods, characterized by light-analyte interactions, are explained explicitly. The sensitivity and the detection limit are essentially determined by the cavity properties, and are limited by the various noise sources in the measurements. On the one hand, recent advances include significant sensitivity enhancement using techniques to construct novel microcavity structures with reduced mode volumes, to localize the mode field, or to introduce optical gain. On the other hand, researchers attempt to lower the detection limit by improving the spectral resolution, which can be implemented by suppressing the experimental noises. We also review the methods of achieving a better temporal resolution by employing mode locking techniques or cavity ring up spectroscopy. In conclusion, outlooks on the possible ways to implement microcavity-based sensing devices and potential applications are provided.
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Keywords:  optical microcavities; photonic crystals; single nanoparticle detection; whispering gallery modes

Year:  2017        PMID: 28060436     DOI: 10.1002/adma.201604920

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  16 in total

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Journal:  Micromachines (Basel)       Date:  2021-04-21       Impact factor: 2.891

3.  Special Issue on the 60th anniversary of the first laser-Series I: Microcavity Photonics-from fundamentals to applications.

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4.  Polymer encapsulated microcavity optomechanical magnetometer.

Authors:  Jiangang Zhu; Guangming Zhao; Igor Savukov; Lan Yang
Journal:  Sci Rep       Date:  2017-08-21       Impact factor: 4.379

5.  Probing the Interaction of Dielectric Nanoparticles with Supported Lipid Membrane Coatings on Nanoplasmonic Arrays.

Authors:  Abdul Rahim Ferhan; Gamaliel Junren Ma; Joshua A Jackman; Tun Naw Sut; Jae Hyeon Park; Nam-Joon Cho
Journal:  Sensors (Basel)       Date:  2017-06-23       Impact factor: 3.576

6.  Ringing phenomenon based measurement of weak mode-coupling strength in an optical microresonator.

Authors:  Ming-Yong Ye; Mei-Xia Shen; Xiu-Min Lin
Journal:  Sci Rep       Date:  2017-12-12       Impact factor: 4.379

Review 7.  Optofluidics Refractometers.

Authors:  Cheng Li; Gang Bai; Yunxiao Zhang; Min Zhang; Aoqun Jian
Journal:  Micromachines (Basel)       Date:  2018-03-20       Impact factor: 2.891

8.  Silicon microcavity arrays with open access and a finesse of half a million.

Authors:  Georg Wachter; Stefan Kuhn; Stefan Minniberger; Cameron Salter; Peter Asenbaum; James Millen; Michael Schneider; Johannes Schalko; Ulrich Schmid; André Felgner; Dorothee Hüser; Markus Arndt; Michael Trupke
Journal:  Light Sci Appl       Date:  2019-04-10       Impact factor: 17.782

9.  Optical vector analysis with attometer resolution, 90-dB dynamic range and THz bandwidth.

Authors:  Ting Qing; Shupeng Li; Zhenzhou Tang; Bindong Gao; Shilong Pan
Journal:  Nat Commun       Date:  2019-11-13       Impact factor: 14.919

10.  Coupling of Surface Plasmon Modes and Refractive Index Sensitivity of Hollow Silver Nanoprism.

Authors:  K J Zhang; D B Lu; B Da; Z J Ding
Journal:  Sci Rep       Date:  2018-10-30       Impact factor: 4.379

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