Z-eigenvalue inclusion theorem of tensors and the geometric measure of entanglement of multipartite pure states
Author:
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Computational Mathematics
Link
https://link.springer.com/content/pdf/10.1007/s40314-020-01166-y.pdf
Reference31 articles.
1. Chang K, Pearson K, Zhang T (2013) Some variational principles for $$Z$$-eigenvalues of nonnegative tensors. Linear Algebra Appl 438(11):4166–4182
2. Che M, Qi L, Wei Y, Zhang G (2018) Geometric measures of entanglement in multipartite pure states via complex-valued neural networks. Neurocomputing 313:25–38
3. Chen L, Han L, Zhou L (2016) Computing tensor eigenvalues via homotopy methods. SIAM J Matrix Anal Appl 37(1):290–319
4. Chen L, Han L, Yin H et al (2019) A homotopy method for computing the largest eigenvalue of an irreducible nonnegative tensor. J Comput Appl Math 355(1):174–181
5. Cui C-F, Dai Y-H, Nie J (2014) All real eigenvalues of symmetric tensors. SIAM J Matrix Anal Appl 35(4):1582–1601
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