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Publications in Math-Net.Ru |
Citations |
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2024 |
| 1. |
S. I. Ashitkov, P. S. Komarov, A. V. Ovchinnikov, S. A. Romashevskiy, E. V. Struleva, O. V. Chefonov, M. B. Agranat, “Nonequilibrium heating of electrons, melting, and modification of a nickel nanofilm by an ultrashort terahertz pulse”, Pis'ma v Zh. Èksper. Teoret. Fiz., 120:8 (2024), 605–614 ; JETP Letters, 120:8 (2024), 580–588 |
1
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| 2. |
O. V. Chefonov, A. V. Ovchinnikov, M. B. Agranat, S. Bodrov, M. A. Kiselev, A. Stepanov, “Генерация второй оптической гармоники при взаимодействии фемтосекундного лазерного и пикосекундного терагерцевого импульсов в сапфире”, TVT, 62:5 (2024), 739–749 |
| 3. |
A. V. Ovchinnikov, O. V. Chefonov, A. V. Kudryavtsev, E. D. Mishina, M. B. Agranat, “Динамика генерации свободных носителей в кремнии с различным типом легирования при воздействии терагерцевыми импульсами”, TVT, 62:4 (2024), 625–631 |
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2023 |
| 4. |
E. D. Mishina, V. R. Bilyk, N. È. Sherstyuk, V. M. Mukhortov, K. P. Sharanov, M. B. Agranat, A. V. Ovchinnikov, A. S. Sigov, “Friction-induced polarization dynamics in Bi$_4$Ti$_3$O$_{12}$ thin films”, Fizika Tverdogo Tela, 65:12 (2023), 2267–2274 |
| 5. |
O. V. Chefonov, A. V. Ovchinnikov, M. B. Agranat, “Generation of the second optical harmonic under the action of narrowband terahertz pulses in the antiferromagnet $\rm NiO$”, TVT, 61:6 (2023), 920–925 ; High Temperature, 61:6 (2023), 846–851 |
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2022 |
| 6. |
O. V. Chefonov, A. V. Ovchinnikov, M. B. Agranat, “Study of second optical harmonic generation in terahertz pulse-induced antiferromagnetic NiO”, Kvantovaya Elektronika, 52:3 (2022), 269–273 [Quantum Electron., 52:3 (2022), 269–273 ] |
2
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| 7. |
A. V. Ovchinnikov, O. V. Chefonov, M. B. Agranat, “Generation of the second optical harmonic in silicon under the action of terahertz pulse with high electric field strength”, TVT, 60:5 (2022), 666–671 ; High Temperature, 60:5 (2022), 607–611 |
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2021 |
| 8. |
A. A. Yurkevich, A. V. Ovchinnikov, M. B. Agranat, “Propagation of an ultrashort terahertz pulse with a high electric field amplitude in a silicon sample”, TVT, 59:6 (2021), 948–951 ; High Temperature, 60:1, Suppl. 3 (2022), S430–S432 |
| 9. |
O. V. Chefonov, A. V. Ovchinnikov, M. B. Agranat, “Electrooptical effect in silicon induced by a terahertz radiation pulse”, TVT, 59:6 (2021), 844–851 ; High Temperature, 60:1, Suppl. 3 (2022), S332–S338 |
3
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| 10. |
A. V. Ovchinnikov, O. V. Chefonov, M. B. Agranat, A. N. Stepanov, “Emission of electrons from a metal needle when irradiated with an IR femtosecond laser at a wave length of $1240$ nm”, TVT, 59:4 (2021), 502–506 ; High Temperature, 60:Suppl. 1 (2022), S16–S19 |
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2020 |
| 11. |
V. R. Bilyk, E. D. Mishina, A. V. Ovchinnikov, M. B. Agranat, “Ultrafast modulation of ferroelectric polarization in a $\rm Ba_{0.8}\rm Sr_{0.2}\rm TiO_3$ film with an intensive subperiodic terahertz pulse”, TVT, 58:6 (2020), 955–957 ; High Temperature, 58:6 (2020), 942–944 |
| 12. |
A. V. Ovchinnikov, O. V. Chefonov, M. B. Agranat, “The effect of short pulses of terahertz radiation on the destruction of thin lead films”, TVT, 58:4 (2020), 641–645 ; High Temperature, 58:4 (2020), 590–594 |
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2019 |
| 13. |
O. V. Chefonov, A. V. Ovchinnikov, S. A. Evlashin, M. B. Agranat, “Degradation and destruction of thin steel films under the action of multiple ultrashort pulses of THz radiation”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:11 (2019), 41–43 ; Tech. Phys. Lett., 45:6 (2019), 570–572 |
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| 14. |
S. I. Ashitkov, A. V. Ovchinnikov, D. S. Sitnikov, M. B. Agranat, “Formation of an absorbing layer and superfast gallium arsenide transition in the metal state under the action of femtosecond laser pulses”, TVT, 57:6 (2019), 882–885 ; High Temperature, 57:6 (2019), 859–862 |
| 15. |
O. V. Chefonov, A. V. Ovchinnikov, D. S. Sitnikov, M. B. Agranat, “Focal spot imaging of terahertz subpicosecond pulse by THz-field-induced optical second harmonic generation”, High Temperature, 57:1 (2019), 137–139 |
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2018 |
| 16. |
A. V. Ovchinnikov, O. V. Chefonov, D. S. Sitnikov, I. V. Il'ina, S. I. Ashitkov, M. B. Agranat, “A source of THz radiation with electric field strength of more than 1 MV cm<sup>-1</sup> on the basis of 100-Hz femtosecond Cr : forsterite laser system”, Kvantovaya Elektronika, 48:6 (2018), 554–558 [Quantum Electron., 48:6 (2018), 554–558 ] |
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| 17. |
S. I. Ashitkov, P. S. Komarov, E. V. Struleva, M. B. Agranat, “Titanium resistance to deformation near the theoretical strength limit”, TVT, 56:6 (2018), 897–901 ; High Temperature, 56:6 (2018), 873–877 |
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| 18. |
I. V. Il'ina, D. S. Sitnikov, M. B. Agranat, “State-of-the-art of studies of the effect of terahertz radiation on living biological systems”, TVT, 56:5 (2018), 814–837 ; High Temperature, 56:5 (2018), 789–810 |
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| 19. |
S. A. Romashevskii, A. A. Pronkin, S. I. Ashitkov, M. B. Agranat, “Graphite Surface Microhardening with Femtosecond Laser Pulses”, High Temperature, 56:4 (2018), 616–619 |
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| 20. |
S. A. Romashevskii, S. I. Ashitkov, M. B. Agranat, “Femtosecond laser technology for solid-state material processing: Creation of functional surfaces and selective modification of nanoscale layers”, TVT, 56:4 (2018), 609–630 ; High Temperature, 56:4 (2018), 587–604 |
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2017 |
| 21. |
S. A. Romashevskii, A. V. Ovchinnikov, O. V. Chefonov, M. B. Agranat, “Subpicosecond terahertz radiation with an electric field above $1$ MV/cm: Interaction with condensed matter and its applications”, High Temperature, 55:6 (2017), 859–865 |
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| 22. |
M. B. Agranat, I. V. Il'ina, D. S. Sitnikov, “Application of terahertz spectroscopy for remote express analysis of gases”, TVT, 55:6 (2017), 759–774 ; High Temperature, 55:6 (2017), 922–934 |
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2016 |
| 23. |
A. V. Ovchinnikov, O. V. Chefonov, M. B. Agranat, K. A. Grishunin, N. A. Il'in, R. V. Pisarev, A. V. Kimel, A. M. Kalashnikova, “Optical second harmonic generation induced by picosecond terahertz pulses in centrosymmetric antiferromagnet NiO”, Pis'ma v Zh. Èksper. Teoret. Fiz., 104:7 (2016), 467–474 ; JETP Letters, 104:7 (2016), 441–448 |
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| 24. |
S. I. Ashitkov, P. S. Komarov, A. V. Ovchinnikov, E. V. Struleva, M. B. Agranat, “Strength of liquid tin at extremely high strain rates under a femtosecond laser action”, Pis'ma v Zh. Èksper. Teoret. Fiz., 103:8 (2016), 611–616 ; JETP Letters, 103:8 (2016), 544–548 |
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| 25. |
O. V. Chefonov, A. V. Ovchinnikov, I. V. Il'ina, M. B. Agranat, “Measurement of ablation threshold of oxide-film-coated aluminium nanoparticles irradiated by femtosecond laser pulses”, Kvantovaya Elektronika, 46:3 (2016), 223–228 [Quantum Electron., 46:3 (2016), 223–228 ] |
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| 26. |
S. I. Ashitkov, P. S. Komarov, E. V. Struleva, A. A. Yurkevich, M. B. Agranat, “Experimental measurements of optical constants of the metals in the two-temperature state”, TVT, 54:6 (2016), 957–959 ; High Temperature, 54:6 (2016), 899–901 |
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| 27. |
S. A. Romashevskii, M. B. Agranat, A. S. Dmitriev, “Thermal training of functional surfaces fabricated with femtosecond laser pulses”, High Temperature, 54:3 (2016), 461–465 |
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2015 |
| 28. |
M. B. Agranat, S. I. Ashitkov, A. V. Ovchinnikov, D. S. Sitnikov, A. A. Yurkevich, O. V. Chefonov, L. T. Perel'man, S. I. Anisimov, V. E. Fortov, “Thermal emission of hot electrons in a metal”, Pis'ma v Zh. Èksper. Teoret. Fiz., 101:9 (2015), 671–676 ; JETP Letters, 101:9 (2015), 598–602 |
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| 29. |
S. I. Ashitkov, P. S. Komarov, E. V. Struleva, M. B. Agranat, G. I. Kanel, “Mechanical and optical properties of vanadium under shock picosecond loads”, Pis'ma v Zh. Èksper. Teoret. Fiz., 101:4 (2015), 294–299 ; JETP Letters, 101:4 (2015), 276–281 |
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| 30. |
S. I. Ashitkov, S. A. Romashevskii, P. S. Komarov, A. A. Burmistrov, V. V. Zhakhovskii, N. A. Inogamov, M. B. Agranat, “Formation of nanostructures under femtosecond laser ablation of metals”, Kvantovaya Elektronika, 45:6 (2015), 547–550 [Quantum Electron., 45:6 (2015), 547–550 ] |
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| 31. |
S. I. Ashitkov, P. S. Komarov, E. V. Struleva, A. A. Yurkevich, M. B. Agranat, “Dynamics of radiation emitted by metals exposed to femtosecond laser pulses”, High Temperature, 53:6 (2015), 887–890 |
5
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| 32. |
S. I. Ashitkov, P. S. Komarov, E. V. Struleva, A. A. Yurkevich, M. B. Agranat, “[Динамика излучения металлов при воздействии фемтосекундных лазерных импульсов]” |
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2014 |
| 33. |
G. I. Kanel', S. V. Razorenov, G. V. Garkushin, S. I. Ashitkov, P. S. Komarov, M. B. Agranat, “Deformation resistance and fracture of iron over a wide strain rate range”, Fizika Tverdogo Tela, 56:8 (2014), 1518–1522 ; Phys. Solid State, 56:8 (2014), 1569–1573 |
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| 34. |
I. V. Il'ina, A. V. Ovchinnikov, D. S. Sitnikov, O. V. Chefonov, M. B. Agranat, “Noncontact microsurgery and delivery of substances into stem cells by means of femtosecond laser pulses”, Kvantovaya Elektronika, 44:6 (2014), 594–598 [Quantum Electron., 44:6 (2014), 594–598 ] |
6
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| 35. |
S. I. Ashitkov, P. S. Komarov, A. V. Ovchinnikov, E. V. Struleva, V. V. Zhakhovskii, N. A. Inogamov, M. B. Agranat, “Ablation and nanostructuring of metals by femtosecond laser pulses”, Kvantovaya Elektronika, 44:6 (2014), 535–539 [Quantum Electron., 44:6 (2014), 535–539 ] |
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| 36. |
D. S. Sitnikov, A. V. Ovchinnikov, I. V. Il'ina, O. V. Chefonov, M. B. Agranat, “Laser microsurgery of cells by femtosecond laser scalpel and optical tweezers”, High Temperature, 52:6 (2014), 803–808 |
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2013 |
| 37. |
S. I. Ashitkov, P. S. Komarov, M. B. Agranat, G. I. Kanel', V. E. Fortov, “Achievement of ultimate values of the bulk and shear strengths of iron irradiated by femtosecond laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 98:7 (2013), 439–444 ; JETP Letters, 98:7 (2013), 384–388 |
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| 38. |
I. V. Il'ina, A. V. Ovchinnikov, O. V. Chefonov, D. S. Sitnikov, M. B. Agranat, A. S. Mikaelyan, “Noncontact microsurgery of cell membranes using femtosecond laser pulses for optoinjection of specified substances into cells”, Kvantovaya Elektronika, 43:4 (2013), 365–369 [Quantum Electron., 43:4 (2013), 365–369 ] |
10
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| 39. |
S. I. Ashitkov, P. S. Komarov, A. V. Ovchinnikov, E. V. Struleva, M. B. Agranat, “Deformation dynamics and spallation strength of aluminium under a single-pulse action of a femtosecond laser”, Kvantovaya Elektronika, 43:3 (2013), 242–245 [Quantum Electron., 43:3 (2013), 242–245 ] |
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| 40. |
I. V. Ilina, A. V. Ovchinnikov, D. S. Sitnikov, M. M. Rakityanskiy, M. B. Agranat, Y. V. Khramova, M. L. Semenova, “Application of femtosecond laser pulses in biomedical cell technologies”, TVT, 51:2 (2013), 198–204 ; High Temperature, 51:2 (2013), 173–178 |
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2012 |
| 41. |
S. I. Ashitkov, N. A. Inogamov, V. V. Zhakhovskii, Yu. N. Emirov, M. B. Agranat, I. I. Oleinik, S. I. Anisimov, V. E. Fortov, “Formation of nanocavities in the surface layer of an aluminum target irradiated by a femtosecond laser pulse”, Pis'ma v Zh. Èksper. Teoret. Fiz., 95:4 (2012), 192–197 ; JETP Letters, 95:4 (2012), 176–181 |
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2010 |
| 42. |
S. I. Ashitkov, M. B. Agranat, G. I. Kanel', P. S. Komarov, V. E. Fortov, “Behavior of aluminum near an ultimate theoretical strength in experiments with femtosecond laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 92:8 (2010), 568–573 ; JETP Letters, 92:8 (2010), 516–520 |
172
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| 43. |
M. B. Agranat, S. I. Anisimov, S. I. Ashitkov, V. V. Zhakhovskii, N. A. Inogamov, P. S. Komarov, A. V. Ovchinnikov, V. E. Fortov, V. A. Khokhlov, V. V. Shepelev, “Strength properties of an aluminum melt at extremely high tension rates under the action of femtosecond laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 91:9 (2010), 517–523 ; JETP Letters, 91:9 (2010), 471–477 |
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| 44. |
S. A. Pikuz, O. V. Chefonov, S. V. Gasilov, P. S. Komarov, A. V. Ovchinnikov, I. Yu. Skobelev, S. I. Ashitkov, M. B. Agranat, A. Ya. Faenov, “Radiograph X-ray source based on interaction of femtosecond laser pulse with solid-state targets in an air medium”, TVT, 48:6 (2010), 810–815 ; High Temperature, 48:6 (2010), 772–776 |
1
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2009 |
| 45. |
A. B. Shvartsburg, M. B. Agranat, O. V. Chefonov, “Nanooptics of gradient dielectric films”, Kvantovaya Elektronika, 39:10 (2009), 948–952 [Quantum Electron., 39:10 (2009), 948–952 ] |
9
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| 46. |
M. B. Agranat, V. P. Kandidov, P. S. Komarov, A. V. Ovchinnikov, V. Yu. Fedorov, “Filamentation of femtosecond radiation from a Cr:forsterite laser in air”, Kvantovaya Elektronika, 39:6 (2009), 552–559 [Quantum Electron., 39:6 (2009), 552–559 ] |
6
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2008 |
| 47. |
A. V. Ovchinnikov, S. I. Ashitkov, M. B. Agranat, D. S. Sitnikov, “A power amplifier for a femtosecond terawatt Cr:forsterite laser system”, Kvantovaya Elektronika, 38:4 (2008), 325–329 [Quantum Electron., 38:4 (2008), 325–329 ] |
2
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2007 |
| 48. |
M. B. Agranat, N. E. Andreev, S. I. Ashitkov, M. E. Veisman, P. R. Levashov, A. V. Ovchinnikov, D. S. Sitnikov, V. E. Fortov, K. V. Khishchenko, “Determination of the transport and optical properties of a nonideal solid-density plasma produced by femtosecond laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 85:6 (2007), 328–333 ; JETP Letters, 85:6 (2007), 271–276 |
81
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2006 |
| 49. |
M. B. Agranat, S. I. Anisimov, S. I. Ashitkov, A. V. Ovchinnikov, P. S. Kondratenko, D. S. Sitnikov, V. E. Fortov, “On the mechanism of the absorption of femtosecond laser pulses in the melting and ablation of Si and GaAs”, Pis'ma v Zh. Èksper. Teoret. Fiz., 83:11 (2006), 592–595 ; JETP Letters, 83:11 (2006), 501–504 |
35
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| 50. |
M. B. Agranat, N. E. Andreev, S. I. Ashitkov, A. V. Ovchinnikov, D. S. Sitnikov, V. E. Fortov, A. P. Shevel'ko, “Generation of characteristic x rays by a terawatt femtosecond chromium-forsterite laser”, Pis'ma v Zh. Èksper. Teoret. Fiz., 83:2 (2006), 80–83 ; JETP Letters, 83:2 (2006), 72–74 |
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2004 |
| 51. |
S. I. Ashitkov, A. V. Ovchinnikov, M. B. Agranat, “Recombination of an electron-hole plasma in silicon under the action of femtosecond laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 79:11 (2004), 657–659 ; JETP Letters, 79:11 (2004), 529–531 |
21
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| 52. |
M. B. Agranat, S. I. Ashitkov, A. A. Ivanov, A. V. Konyashchenko, A. V. Ovchinnikov, A. A. Podshivalov, “Gigawatt Cr:forsterite regenerative amplifier of femtosecond pulses with a pulse repetition rate of 10 Hz”, Kvantovaya Elektronika, 34:11 (2004), 1018–1022 [Quantum Electron., 34:11 (2004), 1018–1022 ] |
5
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| 53. |
M. B. Agranat, S. I. Ashitkov, A. A. Ivanov, A. V. Konyashchenko, A. V. Ovchinnikov, V. E. Fortov, “Terawatt femtosecond Cr : forsterite laser system”, Kvantovaya Elektronika, 34:6 (2004), 506–508 [Quantum Electron., 34:6 (2004), 506–508 ] |
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2002 |
| 54. |
S. I. Ashitkov, M. B. Agranat, P. S. Kondratenko, S. I. Anisimov, V. E. Fortov, V. V. Temnov, K. Sokolowski-Tinten, B. Rethfeld, P. Zhou, D. von der Linde, “Ultrafast laser-induced phase transitions in tellurium”, Pis'ma v Zh. Èksper. Teoret. Fiz., 76:7 (2002), 538–541 ; JETP Letters, 76:7 (2002), 461–464 |
27
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| 55. |
S. I. Ashitkov, M. B. Agranat, P. S. Kondratenko, S. I. Anisimov, V. E. Fortov, V. V. Temnov, K. Sokolowski-Tinten, P. Zhou, D. von der Linde, “Ultrafast structural transformations in graphite”, Pis'ma v Zh. Èksper. Teoret. Fiz., 75:2 (2002), 96–99 ; JETP Letters, 75:2 (2002), 87–90 |
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1991 |
| 56. |
B. I. Makshantsev, M. B. Agranat, A. Ya. Aksenov, A. R. Isaakyan, A. D. Kudakov, D. E. Shumov, “Luminescence created in electric deposition of silver ions on silver cathode surface”, Fizika Tverdogo Tela, 33:3 (1991), 952–954 |
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1987 |
| 57. |
M. B. Agranat, S. I. Anisimov, B. I. Makshantsev, “Picosecond laser pulse-induced heat emission of metals”, Fizika Tverdogo Tela, 29:11 (1987), 3433–3436 |
| 58. |
M. B. Agranat, S. I. Anisimov, S. I. Ashitkov, B. I. Makshantsev, I. B. Ovchinnikova, “Heat emission from metals with electrons out of equilibrium with the lattice”, Fizika Tverdogo Tela, 29:11 (1987), 3267–3276 |
1
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1985 |
| 59. |
M. B. Agranat, S. I. Ashitkov, “Excitation of metal hot-electrons with the $CO_2$-laser emission”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 11:2 (1985), 104–108 |
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1976 |
| 60. |
M. B. Agranat, N. P. Novikov, V. P. Perminov, P. A. Yampol'skiĭ, “Some aspects of the initial stage of the development of laser damage in polymethylmethacrylate”, Kvantovaya Elektronika, 3:10 (1976), 2279–2282 [Sov J Quantum Electron, 6:10 (1976), 1240–1242] |
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| 61. |
M. B. Agranat, A. V. Ovchinnikov, O. V. Chefonov, “Особенности перехода диэлектрической проницаемости в область отрицательных значений в легированном кремнии в терагерцевом диапазоне спектра при воздействии сильных электрических полей”, TVT, 0 |
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