schur complements
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2021 ◽  
Vol volume 12, issue 2 ◽  
Author(s):  
Ansari Abdullah ◽  
Ayan Mahalanobis ◽  
Vivek M. Mallick

The elliptic curve discrete logarithm problem is considered a secure cryptographic primitive. The purpose of this paper is to propose a paradigm shift in attacking the elliptic curve discrete logarithm problem. In this paper, we will argue that initial minors are a viable way to solve this problem. This paper will present necessary algorithms for this attack. We have written a code to verify the conjecture of initial minors using Schur complements. We were able to solve the problem for groups of order up to $2^{50}$. Comment: 13 pages; revised for publication


2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Zdeněk Dostál ◽  
Tomáš Brzobohatý ◽  
Oldřich Vlach

Abstract Bounds on the spectrum of Schur complements of subdomain stiffness matrices with respect to the interior variables are key ingredients of the convergence analysis of FETI (finite element tearing and interconnecting) based domain decomposition methods. Here we give bounds on the regular condition number of Schur complements of “floating” clusters arising from the discretization of 3D Laplacian on a cube decomposed into cube subdomains. The results show that the condition number of the cluster defined on a fixed domain decomposed into m × m × m cube subdomains connected by face and optionally edge averages increases proportionally to m. The estimates support scalability of unpreconditioned H-FETI-DP (hybrid FETI dual-primal) method. Though the research is most important for the solution of variational inequalities, the results of numerical experiments indicate that unpreconditioned H-FETI-DP with large clusters can be useful also for the solution of huge linear problems.


Author(s):  
Chaoqian Li ◽  
Zhengyu Huang ◽  
Jianxing Zhao
Keyword(s):  

Author(s):  
Zdeněk Dostál ◽  
David Horák ◽  
Tomáš Brzobohatý ◽  
Petr Vodstrčil
Keyword(s):  

2019 ◽  
Vol 581 ◽  
pp. 214-246 ◽  
Author(s):  
Maximiliano Contino ◽  
Alejandra Maestripieri ◽  
Stefania Marcantognini

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