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ANALYSIS OF A FOURTH-ORDER EXPONENTIAL PDE ARISING FROM A CRYSTAL SURFACE JUMP PROCESS WITH METROPOLIS-TYPE TRANSITION RATES

Publication ,  Journal Article
Gao, Y; Katsevich, AE; Liu, JG; Lu, J; Marzuola, JL
Published in: Pure and Applied Analysis
January 1, 2021

We analytically and numerically study a fourth-order PDE modeling rough crystal surface diffusion on the macroscopic level. We discuss existence of solutions globally in time and long-time dynamics for the PDE model. The PDE, originally derived by Katsevich is the continuum limit of a microscopic model of the surface dynamics, given by a Markov jump process with Metropolis-type transition rates. We outline the convergence argument, which depends on a simplifying assumption on the local equilibrium measure that is valid in the high-temperature regime. We provide numerical evidence for the convergence of the microscopic model to the PDE in this regime.

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Published In

Pure and Applied Analysis

DOI

EISSN

2578-5885

ISSN

2578-5893

Publication Date

January 1, 2021

Volume

3

Issue

4

Start / End Page

595 / 612
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Gao, Y., Katsevich, A. E., Liu, J. G., Lu, J., & Marzuola, J. L. (2021). ANALYSIS OF A FOURTH-ORDER EXPONENTIAL PDE ARISING FROM A CRYSTAL SURFACE JUMP PROCESS WITH METROPOLIS-TYPE TRANSITION RATES. Pure and Applied Analysis, 3(4), 595–612. https://doi.org/10.2140/paa.2021.3.595
Gao, Y., A. E. Katsevich, J. G. Liu, J. Lu, and J. L. Marzuola. “ANALYSIS OF A FOURTH-ORDER EXPONENTIAL PDE ARISING FROM A CRYSTAL SURFACE JUMP PROCESS WITH METROPOLIS-TYPE TRANSITION RATES.” Pure and Applied Analysis 3, no. 4 (January 1, 2021): 595–612. https://doi.org/10.2140/paa.2021.3.595.
Gao Y, Katsevich AE, Liu JG, Lu J, Marzuola JL. ANALYSIS OF A FOURTH-ORDER EXPONENTIAL PDE ARISING FROM A CRYSTAL SURFACE JUMP PROCESS WITH METROPOLIS-TYPE TRANSITION RATES. Pure and Applied Analysis. 2021 Jan 1;3(4):595–612.
Gao, Y., et al. “ANALYSIS OF A FOURTH-ORDER EXPONENTIAL PDE ARISING FROM A CRYSTAL SURFACE JUMP PROCESS WITH METROPOLIS-TYPE TRANSITION RATES.” Pure and Applied Analysis, vol. 3, no. 4, Jan. 2021, pp. 595–612. Scopus, doi:10.2140/paa.2021.3.595.
Gao Y, Katsevich AE, Liu JG, Lu J, Marzuola JL. ANALYSIS OF A FOURTH-ORDER EXPONENTIAL PDE ARISING FROM A CRYSTAL SURFACE JUMP PROCESS WITH METROPOLIS-TYPE TRANSITION RATES. Pure and Applied Analysis. 2021 Jan 1;3(4):595–612.

Published In

Pure and Applied Analysis

DOI

EISSN

2578-5885

ISSN

2578-5893

Publication Date

January 1, 2021

Volume

3

Issue

4

Start / End Page

595 / 612