Two-quantum photon correlator under the regime of free-induction decay in $\mathrm{CdS}$ at room temperature
Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Uchenye Zapiski Kazanskogo Universiteta. Seriya Fiziko-Matematicheskie Nauki, Tome 155 (2013) no. 1, pp. 90-98 Cet article a éte moissonné depuis la source Math-Net.Ru

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The signals of the free-induction decay (FID) are detected in a $\mathrm{CdS}$ crystal at a wavelength of 790 nm under the condition of two-photon absorption of light quanta from different crossed femtosecond laser beams, with one photon being absorbed from a beam of wavevector $\mathbf k_1$, and the other photon from another beam of wavevector $\mathbf k_2$. FID-photons with wavelengths of 790 nm are emitted in two opposite directions and are correlated by frequencies, places and times of birth.
Mots-clés : entanglement, EPR-pair, electrons
Keywords: free-induction decay, correlated photons, $\mathrm{CdS}$, two-photon absorption, room temperature.
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     journal = {U\v{c}\"enye zapiski Kazanskogo universiteta. Seri\^a Fiziko-matemati\v{c}eskie nauki},
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A. V. Leontiev; T. G. Mitrofanova; V. V. Samartsev; O. Kh. Khasanov. Two-quantum photon correlator under the regime of free-induction decay in $\mathrm{CdS}$ at room temperature. Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Uchenye Zapiski Kazanskogo Universiteta. Seriya Fiziko-Matematicheskie Nauki, Tome 155 (2013) no. 1, pp. 90-98. http://geodesic.mathdoc.fr/item/UZKU_2013_155_1_a12/

[1] Klyshko D. N., “Kogerentnyi raspad fotonov v nelineinoi srede”, Pisma v ZhETF, 6:1 (1967), 490–492

[2] Akhmanov S. A., Fadeev V. V., Khokhlov R. V., Chunaev O. N., “Kvantovye shumy v parametricheskikh usilitelyakh sveta”, Pisma v ZhETF, 6:4 (1967), 575–578

[3] Harris S. E., Oshman M. K., Byer R. L., “Observation of tunable optical parametric fluorescence”, Phys. Rev. Lett., 18:18 (1967), 732–734 | DOI

[4] Magde D., Mahr H. V., “Study in ammonium dihydrogen phosphate of spontaneous parametric interaction tunable from 4400 to 16000 Å”, Phys. Rev. Lett., 18:21 (1967), 905–907 | DOI

[5] Klyshko D. N., Fotony i nelineinaya optika, Nauka, M., 1980, 256 pp.

[6] Baumester D., Ekert A., Tsailinger A., Fizika kvantovoi informatsii, Postmarket, M., 2002, 376 pp.

[7] Gorbachev V. N., Zhilibo A. I., Fizicheskie osnovy sovremennykh informatsionnykh protsessov, SPIP, SPb., 2004, 75 pp.

[8] Grinberg A. A., Kramer N. I., “Rasseyanie sveta na svete v poluprovodnikakh i izolyatorakh”, Fizika tverdogo tela, 8:5 (1966), 1555–1561

[9] Grinberg A. A., Kramer N. I., “Svyaz mezhdu secheniem rasseyaniya sveta na svete i nelineinoi polyarizuemostyu kristallov”, Fizika tverdogo tela, 10:7 (1967), 2001–2007

[10] Wang L. F., Hong C. K., Friber S. R., “Generation of correlated photons via four-wave mixing in optical fiber”, J. Opt. B: Quantum Semiclass. Opt., 3:5 (2001), 346–352 | DOI

[11] Moreau E., Robert I., Manin L., Thierry-Mieg V., Gérard J.M., Abram I., “Quantum cascade of photons in semiconductor quantum dots”, Phys. Rev. Lett., 87:18 (2001), 183601-1–183601-4 | DOI

[12] Kiraz A., Falth S., Becher C., Gayral B., Schoenfeld W. V., Petroff P. M., Zhang Lidong, Hu E., Imamoglu A., “Photon correlation spectroscopy of a single quantum dot”, Phys. Rev. B, 65:16 (2002), 161303(R)-1–161303(R)-4 | DOI

[13] Evseev I. V., Rubtsova N. N., Samartsev V. V., Kogerentnye perekhodnye protsessy v optike, Fizmatlit, M., 2009, 536 pp.

[14] Einstein A., Podolsky B., Rosen N., “Can quantum-mechanical description of physical reality be considered complete?”, Phys. Rev., 47:10 (1935), 777–780 | DOI | Zbl

[15] Hillmann F., Voigt J., Redlin H., “Two-photon excited photon echo in CdS”, App. Phys. Lett., 77:25 (2000), 4181–4183 | DOI

[16] Ivanin K. V., Leontyev A. V., Lobkov V. S., Nikiforov V. G., Salikhov K. M., Samartsev V. V., Safiullin G. M., “Femtosecond four-wave mixing spectroscopy on CdS crystal at room temperature”, Laser Phys. Lett., 6:9 (2009), 644–646 | DOI

[17] A. M. Prokhorov (Gl. red.), Fizicheskii entsiklopedicheskii slovar, Sov. entsikl., M., 1983, 659 pp. | MR

[18] Kippelen B., Grun J. B., Honenlage B., Levy R., “Transient optical nonlinearities in CdS studied by laser-induced grating spectroscopy at room temperature”, J. Opt. Soc. Am. B, 8:11 (1991), 2363–2369 | DOI

[19] Rebane A., Drobishev M., Karotki A., “Frequency-domain gratings by simultaneous absorption of two photons”, J. Lumin., 98:1–4 (2002), 341–353 | DOI

[20] Kozlov S. A., Samartsev V. V., Osnovy femtosekundnoi optiki, Fizmatlit, M., 2009, 291 pp.

[21] Weiner A. M., Ippen E. P., “Novel transient scattering technique for femtosecond dephasing measurements”, Opt. Lett., 9:2 (1984), 53–55 | DOI