Global Well-Posedness of Stochastic Nematic Liquid Crystals with Random Initial and Boundary Conditions Driven by Multiplicative Noise

Author:

Wang Lidan,Wu Jiang-Lun,Zhou GuoliORCID

Funder

national natural science foundation of china

chongqing key laboratory of analytic mathematics and applications

natural science foundation project of cq

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Control and Optimization

Reference20 articles.

1. Brzeźniak, Z., Hausenblas, E., Razafimandimby, P.: Some results on the penalised nematic liquid crystals driven by multiplicative noise. arXiv:1310.8641v3 [math.PR] (2016)

2. Brzeźniak, Z., Hausenblas, E., Razafimandimby, P.: Stochastic nonparabolic dissipative systems modelling the flow of liquid crystals: strong solution. In: RIMS Kokyuroku Proceeding of RIMS Symposium on Mathematical Analysis of Incompressible Flow, vol. 1875, pp. 41–72 (2014)

3. Brzeźniak, Z., Manna, U., Panda, A.-A.: Martingale solutions of nematic liquid crystals driven by pure jump noise in the Marcus canonical form. J. Differ. Equ. 266, 6204–6283 (2019)

4. Brzeźniak, Z., Motyl, E.: Existence of martingale solutions of the stochastic Navier-Stokes equations in unbounded 2D and 3D-domains. J. Differ. Equ. 254, 1627–1685 (2013)

5. Duan, J., Lu, K., Schmalfuss, B.: Invariant manifolds for stochastic partial differential equations. Ann. Probab. 31, 2109–2135 (2003)

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1. Strong Solution for 3D Compressible Liquid Crystal System with Random Force;Journal of Mathematical Fluid Mechanics;2023-02-20

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