100 citations to https://www.mathnet.ru/rus/faa2002
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А. Б. Жеглов, Х. Курке, “Геометрические свойства коммутативных подалгебр дифференциальных операторов в частных производных”, Матем. сб., 206:5 (2015), 61–106
; A. B. Zheglov, H. Kurke, “Geometric properties of commutative subalgebras of partial differential operators”, Sb. Math., 206:5 (2015), 676–717
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В. Н. Давлетшина, “Коммутирующие дифференциальные операторы ранга два с тригонометрическими коэффициентами”, Сиб. матем. журн., 56:3 (2015), 513–519
; V. N. Davletshina, “Commuting differential operators of rank $2$ with trigonometric coefficients”, Siberian Math. J., 56:3 (2015), 405–410
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A. B. Zheglov, A. E. Mironov, “On commuting differential operators with polynomial coefficients corresponding to spectral curves of genus one”, Dokl. Math., 91:3 (2015), 281
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Francisco Correa, Vít Jakubský, Mikhail S. Plyushchay, “PT-symmetric invisible defects and confluent Darboux-Crum transformations”, Phys. Rev. A, 92:2 (2015)
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В. Н. Давлетшина, Э. И. Шамаев, “О коммутирующих дифференциальных операторах ранга два”, Сиб. матем. журн., 55:4 (2014), 744–749
; V. N. Davletshina, E. I. Shamaev, “On commuting differential operators of rank $2$”, Siberian Math. J., 55:4 (2014), 606–610
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Kurke H., Osipov D., Zheglov A., “Commuting Differential Operators and Higher-Dimensional Algebraic Varieties”, Sel. Math.-New Ser., 20:4 (2014), 1159–1195
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Mironov A.E., “Self-Adjoint Commuting Ordinary Differential Operators”, Invent. Math., 197:2 (2014), 417–431
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Francisco Correa, Olaf Lechtenfeld, Mikhail Plyushchay, “Nonlinear supersymmetry in the quantum Calogero model”, J. High Energ. Phys., 2014:4 (2014)
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A Zabrodin, “Quantum Gaudin model and classical KP hierarchy”, J. Phys.: Conf. Ser., 482 (2014), 012047
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Adrián Arancibia, Mikhail S. Plyushchay, “Transmutations of supersymmetry through soliton scattering and self-consistent condensates”, Phys. Rev. D, 90:2 (2014)