Technical Physics Letters
Volumes and Issues
The possibility of using quantum cascade lasers for terahertz absorption spectroscopy of samples of biological origin
Vaks V. L. 1,2, Anfertev V. A. 1,2, Domracheva E.G. 1, Gavrilenko V. I. 1,2, Chernyaeva M. B. 1
1Institute for Physics of Microstructures, Russian Academy of Sciences, Nizhny Novgorod, Russia
2Ioffe Institute, St. Petersburg, Russia
Email: elena@ipm.sci-nnov.ru, anfertev@ipmras.ru, elena@ipmras.ru, gavr@ipmras.ru, masha@ipm.sci-nnov.ru

PDF
The extension of high-resolution gas spectroscopy in the terahertz range is associated with developing tunable highly stable sources of radiation, for instance, quantum cascade lasers. The paper presents the results of examining the possibility of using a quantum cascade laser (3.8 THz) to study a mixture of vapors and products of thermal decomposition of biological fluid (urine). Examples of measuring the lines of water and isocyanic acid that lie within the quantum cascade laser tuning range are given. The presented results demonstrate the prospects of using the quantum cascade laser to create a line of lasers for studying biological samples. Keywords: quantum cascade laser, high-resolution spectroscopy, absorption line, metabolite-marker.
  1. A.A. Angeluts, A.V. Balakin, M.G. Evdokimov, M.N. Esaulkov, M.M. Nazarov, I.A. Ozheredov, D.A. Sapozhnikov, P.M. Solyankin, O.P. Cherkasova, A.P. Shkurinov, Quantum Electron., 44 (7), 614 (2014). DOI: 10.1070/QE2014v044n07ABEH015565
  2. T. Amini, F. Jahangiri, Z. Ameri, M.A. Hemmatian, J. Lasers Med. Sci., 12, e92 (2021). DOI: 10.34172/jlms.2021.92
  3. M. Wan, J.J. Healy, J.T. Sheridan, Opt. Laser Technol., 122, 105859 (2020). DOI: 10.1016/j.optlastec.2019.105859
  4. D.S. Wishart, Y.D. Feunang, A. Marcu, A.Ch. Guo, K. Liang, R.V. Fresno, T. Sajed, D. Johnson, C. Li, N. Karu, Z. Sayeeda, E. Lo, N. Assempour, M. Berjanskii, S. Singhal, D. Arndt, Y. Liang, H. Badran, J. Grant, A. Serra-Cayuela, Y. Liu, R. Mandal, V. Neveu, A. Pon, C. Knox, M. Wilson, C. Manach, A. Scalbert, Nucl. Acids Res., 46 (D1), D608 (2018). DOI: 10.1093/nar/gkx1089
  5. V.L. Vaks, E.G. Domracheva, M.B. Chernyaeva, V.A. Anfertev, A.A. Ayzenshtadt, A.V. Maslennikova, V.A. Atduev, v kn.: Teragertsovaya fotonika, pod red. V.Ya. Panchenko, A.P. Shkurinova (Izd-vo RAN, M., 2023), s. 576--632. (in Russian)
  6. C.P. Endres, S. Schlemmer, P. Schilke, J. Stutzki, H.S.P. Muller, J. Mol. Spectrosc., 327, 95 (2016). DOI: 10.1016/j.jms.2016.03.005
  7. H.M. Pickett, R.L. Poynter, E.A. Cohen, M.L. Delitsky, J.C. Pearson, H.S.P. Muller, J. Quant. Spectrosc. Radiat. Transfer, 60 (5), 883 (1998). DOI: 10.1016/S0022-4073(98)00091-0a
  8. B.S. Williams, Nature Photon., 1 (9), 517 (2007). DOI: 10.1038/nphoton.2007.166
  9. I.S. Golyak, D.R. Anfimov, P.P. Demkin, P.V. Berezhanskiy, O.A. Nebritova, A.N. Morozov, I.L. Fufurin, J. Biophotonics, 17, e202400151 (2024). DOI: 10.1002/jbio.202400151
  10. J. Radovanovic, N. Vukovic, N. Stanojevic, A. Demic, M. Stojkovic, M. Ignjatovic, N. Basta, F. Perivsic, D. Indjin, Proc. SPIE, 13335, 1333504 (2025). DOI: 10.1117/12.3044671
  11. S. Kumar, Q. Hu, J.L. Reno, Appl. Phys. Lett., 94, 131105 (2009). DOI: 10.1063/1.3114418
  12. V.L. Vaks, V.A. Anfertev, M.B. Chernyaeva, E.G. Domracheva, S.I. Pripolzin, A.N. Baranov, R. Teissier, A.A. Ayzenshtadt, K.A. Gavrilova, Radiophys. Quantum Electron., 65 (10), 760 (2023). DOI: 10.1007/s11141-023-10255-x
  13. L. Schrottke, X. Lu, B. Roben, K. Biermann, M. Wienold, H. Richter, H.-W. Hubers, H.T. Grahn, J. Appl. Phys., 123, 213102 (2018). DOI: 10.1063/1.5024480
  14. V.A. Anfertev, V.L. Vaks, A.I. REutov, A.N. Baranov, R. Teissier, Zhurn. radioelektroniki [elektronnyi zhurnal], No 12 (2018). DOI: 10.30898/1684-1719.2018.12.5 (in Russian)
  15. V.L. Vaks, E.G. Domracheva, M.B. Chernyaeva, V.A. Anfertev, A.V. Maslennikova, A.V. Zheleznyak, T.D. Knyazeva, M.A. Rodionov, A.I. Maiorov, J. Opt. Technol., 89 (4), 243 (2022). DOI: 10.1364/JOT.89.000243
  16. V. Vaks, E. Domracheva, M. Chernyaeva, V. Anfertev, A. Maslennikova, V. Atduev, K. Atduev, M. Rodionov, Appl. Sci., 14, 1955 (2024). DOI: 10.3390/app14051955

Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.

Дата начала обработки статистических данных - 27 января 2016 г.

Publisher:

Ioffe Institute

Institute Officers:

Director: Sergei V. Ivanov

Contact us:

26 Polytekhnicheskaya, Saint Petersburg 194021, Russian Federation
Fax: +7 (812) 297 1017
Phone: +7 (812) 297 2245
E-mail: post@mail.ioffe.ru