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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
A. Khvedelidze, A. Torosyan, “On the hierarchy of classicality and symmetry of quantum states”, Zap. Nauchn. Sem. POMI, 528 (2023), 238–260 |
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2022 |
2. |
A. Khvedelidze, A. Torosyan, “Comparing classicality of qutrits from Hilbert–Schmidt, Bures and Bogoliubov–Kubo–Mori ensembles”, Zap. Nauchn. Sem. POMI, 517 (2022), 250–267 |
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2019 |
3. |
V. Abgaryan, A. Khvedelidze, A. Torosyan, “The global indicator of classicality of an arbitrary $N$-level quantum system”, Zap. Nauchn. Sem. POMI, 485 (2019), 5–23 |
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2016 |
4. |
A. Khvedelidze, A. Torosyan, “The spectrum and separability of mixed two-qubit $X$-states”, Zap. Nauchn. Sem. POMI, 448 (2016), 270–285 ; J. Math. Sci. (N. Y.), 224:2 (2017), 349–359 |
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5. |
V. Gerdt, A. Khvedelidze, Yu. Palii, “On the ring of local unitary invariants for mixed $X$-states of two qubits”, Zap. Nauchn. Sem. POMI, 448 (2016), 107–123 ; J. Math. Sci. (N. Y.), 224:2 (2017), 238–249 |
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2015 |
6. |
A. M. Khvedelidze, I. A. Rogozhin, “Simulation of spin-1/2 dynamics induced by laser field”, Matem. Mod., 27:7 (2015), 129–136 |
7. |
A. Khvedelidze, I. Rogojin, “On the geometric probability of entangled mixed states”, Zap. Nauchn. Sem. POMI, 432 (2015), 274–296 ; J. Math. Sci. (N. Y.), 209:6 (2015), 988–1004 |
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8. |
V. Gerdt, A. Khvedelidze, Y. Palii, “Constructing $\mathrm{SU(2)\times U(1)}$ orbit space for qutrit mixed states”, Zap. Nauchn. Sem. POMI, 432 (2015), 111–127 ; J. Math. Sci. (N. Y.), 209:6 (2015), 878–889 |
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2014 |
9. |
A. M. Khvedelidze, I. A. Rogojin, “On the separability problem for quantum composite systems”, Matem. Mod., 26:11 (2014), 65–70 |
10. |
V. P. Gerdt, A. M. Khvedelidze, Yu. G. Palii, “Describing orbit space of global unitary actions for mixed qudit states”, Zap. Nauchn. Sem. POMI, 421 (2014), 68–80 ; J. Math. Sci. (N. Y.), 200:6 (2014), 682–689 |
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2011 |
11. |
V. Gerdt, D. Mladenov, Yu. Palii, A. Khvedelidze, “$\operatorname{SU}(6)$ Casimir invariants and $\operatorname{SU}(2)\otimes\operatorname{SU}(3)$ scalars for a mixed qubit-qutrit states”, Zap. Nauchn. Sem. POMI, 387 (2011), 102–121 ; J. Math. Sci. (N. Y.), 179:6 (2011), 690–701 |
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2009 |
12. |
V. Gerdt, Yu. Palii, A. Khvedelidze, “On the ring of local invariants for a pair of the entangled $q$-bits”, Zap. Nauchn. Sem. POMI, 373 (2009), 104–123 ; J. Math. Sci. (N. Y.), 168:3 (2010), 368–378 |
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2008 |
13. |
V. P. Gerdt, Yu. G. Palii, A. M. Khvedelidze, “Light-cone Yang–Mills mechanics: $SU(2)$ vs. $SU(3)$”, TMF, 155:1 (2008), 62–73 ; Theoret. and Math. Phys., 155:1 (2008), 557–566 |
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1992 |
14. |
A. N. Kvinikhidze, A. M. Khvedelidze, “Pair-interaction approximation in the equations of quantum field theory for a four-body system”, TMF, 90:1 (1992), 95–112 ; Theoret. and Math. Phys., 90:1 (1992), 62–74 |
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1989 |
15. |
A. N. Kvinikhidze, A. M. Khvedelidze, “Expansion of the boost operator in powers of the coupling constant”, TMF, 78:3 (1989), 357–367 ; Theoret. and Math. Phys., 78:3 (1989), 252–260 |
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16. |
A. N. Kvinikhidze, B. A. Magradze, A. M. Khvedelidze, “Relativistic form factor in terms of wave functions of composite systems at rest”, TMF, 78:2 (1989), 227–233 ; Theoret. and Math. Phys., 78:2 (1989), 162–167 |
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1987 |
17. |
G. P. Jorjadze, A. N. Kvinikhidze, A. M. Khvedelidze, “Representation of symmetry group transformation operators in the interaction picture”, TMF, 73:2 (1987), 311–315 ; Theoret. and Math. Phys., 73:2 (1987), 1239–1242 |
18. |
A. N. Kvinikhidze, V. A. Matveev, A. M. Khvedelidze, “Covariant evolution operator in composite models of quantum field theory”, TMF, 72:1 (1987), 45–57 ; Theoret. and Math. Phys., 72:1 (1987), 710–720 |
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1982 |
19. |
A. N. Kvinikhidze, A. M. Khvedelidze, “Large-angle scattering for nonlocal quasipotentials”, TMF, 50:3 (1982), 397–401 ; Theoret. and Math. Phys., 50:3 (1982), 261–264 |
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2018 |
20. |
V. Abgaryan, A. Khvedelidze, A. Torosyan, “On moduli space of the Wigner quasiprobability distributions for $N$-dimensional quantum systems”, Zap. Nauchn. Sem. POMI, 468 (2018), 177–201 ; J. Math. Sci. (N. Y.), 240:5 (2019), 617–633 |
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Presentations in Math-Net.Ru |
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Organisations |
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