25 citations to https://www.mathnet.ru/rus/im8834
  1. P. Belmans, E. Fatighenti, F. Tanturri, “Polyvector fields for Fano 3-folds”, Math. Z., 304:1 (2023), 12  crossref  mathscinet
  2. Yu. Prokhorov, M. Zaidenberg, “Affine cones over Fano–Mukai fourfolds of genus 10 are flexible”, The Art of Doing Algebraic Geometry, Trends in Mathematics, 2023, 363–383  crossref  mathscinet
  3. K. Loginov, “K-polystability of 3-dimensional log Fano pairs of Maeda type”, Int. J. Math., 34:01 (2023), 2250095  crossref  mathscinet
  4. M. Miao, G. Tian, “A note on Kähler–Ricci flow on Fano threefolds”, Peking Math. J., 2023  crossref
  5. Yu. Prokhorov, M. Zaidenberg, “Fano-Mukai fourfolds of genus 10 and their automorphism groups”, Eur. J. Math., 8:2 (2022), 561–572  crossref  mathscinet  isi
  6. G. Occhetta, E. A. Romano, L. E. Solá Conde, J. A. Wiśniewski, “Small bandwidth $\mathbb{C}^*$-actions and birational geometry”, J. Algebraic Geom., 32:1 (2022), 1–57  crossref  mathscinet
  7. H. Süß, “Orbit spaces of maximal torus actions on oriented Grassmannians of planes”, Springer Proceedings in Mathematics & Statistics, 386, Interactions with Lattice Polytopes, 2022, 335–349  crossref  mathscinet
  8. Ю. Г. Прохоров, “Эквивариантная программа минимальных моделей”, УМН, 76:3(459) (2021), 93–182  mathnet  crossref  mathscinet  zmath  adsnasa; Yu. G. Prokhorov, “Equivariant minimal model program”, Russian Math. Surveys, 76:3 (2021), 461–542  crossref  isi  elib
  9. T. Delcroix, J. Hultgren, “Coupled complex Monge-ampère equations on Fano horosymmetric manifolds”, J. Math. Pures Appl., 153 (2021), 281–315  crossref  mathscinet  zmath  isi  scopus
  10. I. Cheltsov, J. Park, Yu. Prokhorov, M. Zaidenberg, “Cylinders in Fano varieties”, EMS Surv. Math. Sci., 8:1-2 (2021), 39–105  crossref  mathscinet  zmath  isi  scopus
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