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On the distance $\alpha$-spectral radius of a connected graph

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abstract

For a connected graph $G$ and $\alpha\in [0,1)$, the distance $\alpha$-spectral radius of $G$ is the spectral radius of the matrix $D_{\alpha}(G)$ defined as $D_{\alpha}(G)=\alpha T(G)+(1-\alpha)D(G)$, where $T(G)$ is a diagonal matrix of vertex transmissions of $G$ and $D(G)$ is the distance matrix of $G$. We give bounds for the distance $\alpha$-spectral radius, especially for graphs that are not transmission regular, propose some graft transformations that decrease or increase the distance $\alpha$-spectral radius, and determine the unique graphs with minimum and maximum distance $\alpha$-spectral radius among some classes of graphs.

fields

math.CO 1

years

2019 1

verdicts

CONDITIONAL 1

representative citing papers

Bounds on the $\alpha$-distance spectrum of graphs

math.CO · 2019-08-11 · conditional · novelty 5.0

The α-distance Estrada index is introduced and several bounds on α-distance spectral radius, energy, and Estrada index are proved for connected graphs.

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  • Bounds on the $\alpha$-distance spectrum of graphs math.CO · 2019-08-11 · conditional · none · ref 14 · internal anchor

    The α-distance Estrada index is introduced and several bounds on α-distance spectral radius, energy, and Estrada index are proved for connected graphs.