Fishbone resonance structure in the attosecond transient absorption spectroscopy of graphene
Fulong Dong, Jie Liu

TL;DR
This paper explores the fishbone resonance structures in the attosecond transient absorption spectrum of graphene, providing an analytical model that explains the observed features and their dependence on laser parameters.
Contribution
The paper introduces a simplified analytical model for ATAS in graphene, elucidating fishbone resonance structures and their relation to Bessel functions and laser frequency.
Findings
Fishbone structures are explained by first-order Bessel functions.
The tilt angle of fishbone structures depends on pump laser frequency.
Analytical predictions align with numerical ATAS results.
Abstract
We investigate the attosecond transient absorption spectroscopy (ATAS) of graphene by numerically solving four-band density-matrix equations, which demonstrates apparent fish bone resonance structures. To gain insight into these interesting structures, we exploit a simplified model that only considers the electrons of and M points in the Brillouin zone. With the help of this model, we can analytically express the ATAS spectrum as the sum of zeroth- and first-order Bessel functions in the variables of the strength and frequency of the infrared pump field as well as the effective mass of electrons at the and M points. Lorentzian and Fano line shapes in the absorption spectrum are addressed. The fish bone structure consists of periodic V-shaped structure that can be explained by first-order Bessel functions and its tilt angle is solely determined by the frequency of the…
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Taxonomy
TopicsCarbon Nanotubes in Composites · Molecular Junctions and Nanostructures · Analytical Chemistry and Sensors
