A Comparison Principle for Parabolic Complex Monge–Ampère Equations
Author:
Funder
Vietnam Academy of Science and Technology
Publisher
Springer Science and Business Media LLC
Subject
Geometry and Topology
Link
https://link.springer.com/content/pdf/10.1007/s12220-021-00748-4.pdf
Reference15 articles.
1. Crandall, M.G., Ishii, H., Lions, P.L.: User’s guide to viscosity solutions of second order partial differential equations. Bull. Am. Math. Soc. 27(1), 1–67 (1992)
2. Do, H.-S., Le, G., Tô, T.D.: Viscosity solutions to parabolic complex Monge–Ampère equations. Calc. Var. PDEs 59(2), 35 (2020)
3. Eyssidieux, P., Guedj, V., Zeriahi, A.: Viscosity solutions to degenerate complex Monge–Ampère equations. Commun. Pure Appl. Math. 64(8), 1059–1094 (2011)
4. Eyssidieux, P., Guedj, V., Zeriahi, A.: Weak solutions to degenerate complex Monge–Ampère flows I. Math. Ann. 362, 931–963 (2015)
5. Eyssidieux, P., Guedj, V., Zeriahi, A.: Weak solutions to degenerate complex Monge–Ampère flows II. Adv. Math. 293, 37–80 (2016)
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