English

On new existence of a unique common solution to a pair of non-linear matrix equations

Functional Analysis 2020-06-22 v1

Abstract

The main goal of this article is to study the existence of a unique positive definite common solution to a pair of matrix equations of the form \begin{eqnarray*} X^r=Q_1 + \displaystyle \sum_{i=1}^{m} {A_i}^*F(X)A_i \mbox{ and } X^s=Q_2 + \displaystyle \sum_{i=1}^{m} {A_i}^*G(X)A_i \end{eqnarray*} where Q1,Q2P(n)Q_1,Q_2\in P(n), AiM(n)A_i\in M(n) and F,G:P(n)P(n)F,G:P(n)\to P(n) are certain functions and r,s>1r,s>1. In order to achieve our target, we take the help of elegant properties of Thompson metric on the set of all n×nn \times n Hermitian positive definite matrices. To proceed this, we first derive a common fixed point result for a pair of mappings utilizing a certain class of control functions in a metric space. Then, we obtain some sufficient conditions to assure a unique positive definite common solution to the said equations. Finally, to validate our results, we provide a couple of numerical examples with diagrammatic representations of the convergence behaviour of iterative sequences.

Keywords

Cite

@article{arxiv.2006.10863,
  title  = {On new existence of a unique common solution to a pair of non-linear matrix equations},
  author = {Hiranmoy Garai and Lakshmi Kanta Dey and Wutiphol Sintunavarat and Sumit Som and Sayandeepa Raha},
  journal= {arXiv preprint arXiv:2006.10863},
  year   = {2020}
}