Issues

 / 

2022

 / 

March

  

Instruments and methods of investigation


Photothermal and optoacoustic spectroscopy: state of the art and prospects

 , , , , ,
Department of Chemistry, M.V. Lomonosov Moscow State University, Leninskie Gory, Moscow, 119992, Russian Federation

The main issues and areas of application of photothermal and optoacoustic spectroscopy are reviewed. Progress in innovative techniques in the most actively developing areas is presented, including microspectroscopy, multispectral techniques, the measurements of single particles and objects with a resolution better than the diffraction limit (nanoscopy) by both optical and probe-based methods. Possible applications of photothermal and optoacoustic spectroscopy for determining the properties of materials, studying photochemistry and fluorescence, chemical reactions, and analytical and applied chemistry, and solving biomedical problems is discussed. Some prospects for the development of these methods are presented.

Fulltext pdf (1.6 MB)
Fulltext is also available at DOI: 10.3367/UFNe.2021.05.038976
Correspondence should be addressed to
Keywords: photothermal spectroscopy, optoacoustic spectroscopy, photoacoustic spectroscopy, photonics, nanophotonics, biophotonics, microspectroscopy, optoacoustic tomography, nanoscopy, thermal spectroscopy, remote anal„ysis and monitoring techniques, nondestructive testing, materials science, functional materials, theranostics, photochemistry, fluorescence, analytical chemistry, thermodynamics
PACS: 07.60.−j, 42.30.Wb, 43.35.Sx, 43.35.Ud, 78.20.nb, 78.20.N−, 78.20.Pa, 81.70.Cv, 82.80.Kq, 87.19.Pp (all)
DOI: 10.3367/UFNe.2021.05.038976
URL: https://ufn.ru/en/articles/2022/3/d/
000834747900004
2-s2.0-85131117337
2022PhyU...65..270P
Citation: Proskurnin M A, Khabibullin V R, Usoltseva L O, Vyrko E A, Mikheev I V, Volkov D S "Photothermal and optoacoustic spectroscopy: state of the art and prospects" Phys. Usp. 65 270–312 (2022)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Received: 26th, August 2020, revised: 18th, February 2021, 3rd, May 2021

Оригинал: Проскурнин М А, Хабибуллин В Р, Усольцева Л О, Вырко Е А, Михеев И В, Волков Д С «Фототермическая и оптоакустическая спектроскопия: современное состояние и перспективы» УФН 192 294–340 (2022); DOI: 10.3367/UFNr.2021.05.038976

References (657) Cited by (36) Similar articles (20) ↓

  1. S.V. Egerev, L.M. Lyamshev, O.V. Puchenkov “Laser dynamic optoacoustic diagnostics of condensed mediaSov. Phys. Usp. 33 (9) 739–762 (1990)
  2. D.V. Kazantsev, E.A. Kazantseva “Scattering-type apertureless scanning near-field optical microscopyPhys. Usp. 67 588–628 (2024)
  3. E.N. Ragozin, E.A. Vishnyakov et alSoft X-ray spectrometers based on aperiodic reflection gratings and their applicationPhys. Usp. 64 495–514 (2021)
  4. V.N. Ochkin “Spectroscopy of small gas components of a nonequilibrium low-temperature plasmaPhys. Usp. 65 1071–1103 (2022)
  5. A.E. Dubinov, L.A. Mytareva “Invisible cloaking of material bodies using the wave flow methodPhys. Usp. 53 455–479 (2010)
  6. S.A. Pshenichnyuk, N.L. Asfandiarov et alState of the art in dissociative electron attachment spectroscopy and its prospectsPhys. Usp. 65 163–188 (2022)
  7. P.V. Zinin, K.M. Bulatov et alRemote measurement of the temperature distribution on the surface of solids under high-power laser irradiationPhys. Usp. 65 852–863 (2022)
  8. A.V. Shchelokova, I.V. Melchakova et alExperimental realization of invisibility cloakingPhys. Usp. 58 167–190 (2015)
  9. A.S. Pirozhkov, E.N. Ragozin “Aperiodic multilayer structures in soft X-ray opticsPhys. Usp. 58 1095–1105 (2015)
  10. A.S. Bugaev, P.A. Eroshkin et alLow-power X-ray tubes: the current statusPhys. Usp. 56 691–703 (2013)
  11. M.I. Lomaev, V.S. Skakun et alExcilamps: efficient sources of spontaneous UV and VUV radiationPhys. Usp. 46 193–209 (2003)
  12. V.I. Grafutin, E.P. Prokop’ev “Positron annihilation spectroscopy in materials structure studiesPhys. Usp. 45 59–74 (2002)
  13. S.G. Rautian “Real spectral apparatusSov. Phys. Usp. 1 245–273 (1958)
  14. V.L. Vaks, V.A. Anfertev et alHigh resolution terahertz spectroscopy for analytical applicationsPhys. Usp. 63 708–720 (2020)
  15. A.V. Eremin “Passive and active laser methods for studying kinetics of nonequilibrium processes in shock tubesPhys. Usp. 68 675–690 (2025)
  16. N.N. Rubtsova, S.A. Kochubei et alPolarization echo-spectroscopy in a gas at the transition 0—1Phys. Usp. 66 1008–1024 (2023)
  17. V.M. Petrov, P.M. Agruzov et alBroadband integrated optical modulators: achievements and prospectsPhys. Usp. 64 722–739 (2021)
  18. K.B. Fritzler, V.Ya. Prinz “3D printing methods for micro- and nanostructuresPhys. Usp. 62 54–69 (2019)
  19. A.B. Tolstoguzov, P.Yu. Babenko, A.N. Zinoviev “Surface analysis by low-energy ion scattering spectroscopyPhys. Usp. 69 42–73 (2026)
  20. N.N. Aruev “The application of dynamic mass spectrometers for investigations in the field of thermonuclear synthesisPhys. Usp. 60 91–107 (2017)

The list is formed automatically.

© 1918–2026 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions