Creation of a dynamic microcavity by collision of half-cycle light pulses in a resonant medium
Arkhipov R.M.1,2, Rosanov N.N.1,2
1St. Petersburg State University, St. Petersburg, Russia
2Ioffe Institute, St. Petersburg, Russia
Email: arkhipovrostislav@gmail.com, nnrosanov@mail.ru
A simple theoretical approach is proposed, based on an approximate solution of the time dependent Schrödinger equation in the first order of perturbation theory, showing the possibility of creating a dynamic microcavity in the collision of half-cycle, extremely short light pulses in a multilevel medium. Based on the proposed approach, the possibility of controlling the parameters of a microcavity with an increase in the number of colliding pulses is shown. Keywords: population difference gratings, dynamic cavities, extremely short light pulses, half-cycle pulses.
- F. Krausz, M. Ivanov. Rev. Mod. Phys., 81, 163 (2009)
- K. Midorikawa. Nat. Photonics, 16, 267 (2022)
- F. Calegari, G. Sansone, S. Stagira, C. Vozzi, M. Nisoli. J. Physics B: Atomic, Molecular and Optical Physics, 49, 062001 (2016)
- M.T. Hassan, T.T. Luu, A.Moulet, O. Raskazovskaya, P. Zhokhov, M. Garg, N. Karpowicz, A.M. Zheltikov, V. Pervak, F.Krausz, E.Goulielmakis. Nature, 530, 66 (2016)
- H.Y. Kim, M. Garg, S. Mandal, S. Mandal, L. Seiffert, T. Fennel E. Goulielmakis. Nature 613, 662 (2023)
- R.M. Arkhipov, M.V. Arkhipov, N.N. Rosanov. Quant. Electron., 50(9), 801 (2020)
- N.N. Rosanov, R.M. Arkhipov, M.V. Arkhipov. Phys. Usp. 61, 1227 (2018)
- R.M. Arkhipov, M.V. Arkhipov, A.V. Pakhomov, P.A. Obraztsov, N.N. Rosanov. JETP Lett., 117(1), 8 (2023)
- N.N. Rosanov. Phys. Usp., 66, 1059 (2023)
- N. Rosanov, D. Tumakov, M. Arkhipov, R. Arkhipov. Phys. Rev. A, 104 (6), 063101 (2021)
- R.M. Arkhipov, M.V. Arkhipov, I. Babushkin, A. Demircan, U.Morgner, N.N.Rosanov. Opt. Lett., 41, 4983 (2016)
- R.M. Arkhipov, M.V. Arkhipov, I. Babushkin, A. Demircan, U. Morgner, N.N. Rosanov. Sci. Rep., 7, 12467 (2017)
- R. Arkhipov, A. Pakhomov, M. Arkhipov, I. Babushkin, A. Demircan, U. Morgner, N.N. Rosanov. Sci. Rep., 11, 1961, (2021)
- R.M. Arkhipov. JETP Lett., 113, 611 (2021)
- R.M. Arkhipov, M.V. Arkhipov, A.V. Pakhomov, N.N. Rosanov. Laser Phys., 32(6), 066002 (2022)
- R.M. Arkhipov, M.V. Arkhipov, A.V. Pakhomov, O.O. Dyachkova, N.N. Rosanov. Opt. Spectrosc., 130(11), 1443 (2021)
- O.O. Diachkova, R.M. Arkhipov, M.V. Arkhipov, A.V. Pakhomov, N.N. Rosanov. Opt. Commun., 538, 129475 (2023)
- R.M. Arkhipov, O.O. Diachkova, M.V. Arkhipov, A.V. Pakhomov, N.N. Rosanov. Appl. Phys. B, 130, 52 (2024)
- R. Arkhipov, arXiv preprint arXiv:2402.16122
- R.M. Arkhipov, Kvant. Elektron., 54 (2), (77) (2024) (in Russian). [R.M. Arkhipov, Bulletin of the Lebedev Physics Institute, 51 (Suppl 5), S365-S373 (2024)]
- L.D. Landau, E.M. Lifshitz. Quantum mechanics: non-relativistic theory, Vol. 3. (Elsevier, 2013)
- W. Pauli. Handbuch der Physik (Springer, 1933)
- A.B. Migdal. Sov. Phys. JETP, 9, 1163 (1939)
- L. Schiff. Quantum Mechanics (McGraw-Hill, 1968)
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