Export citation

Export citation

Choose format for download:

Download Citation

    Effect of the Berry connection on attosecond transient absorption spectroscopy in gapped graphene

    Jiayu Yan1, Hongxuan Er1, Wei Dang1, Jiahuan Ren1, Chao Chen2,*, Dianxiang Ren3, and Fulong Dong1,†

    • 1College of Physics Science and Technology, Hebei University, Baoding 071002, China
    • 2College of Physics and Electronic Engineering, Xingtai University, Xingtai 054001, China
    • 3Shanxi Institute of Energy, Taiyuan 030600, China

    • *Contact author: chenchao1202@163.com
    • †Contact author: fldonghb@126.com

    Phys. Rev. B 112, 205410 – Published 10 November, 2025

    DOI: https://doi.org/10.1103/1fvz-p7fq

    Abstract

    We investigate the attosecond transient absorption spectroscopy (ATAS) in gapped graphene by numerically solving the four-band density matrix equations. Our results reveal that, in contrast to pristine graphene, whose fishbone-shaped spectra oscillate at twice the pump laser frequency, the ATAS of gapped graphene exhibits an additional component oscillating at the pump laser frequency, induced by the Berry connection. To gain insight into these interesting results, we employ a simplified model to derive an analytical expression for the spectral component stemming from the Berry connection. Our analytical results qualitatively reproduce the key features observed in the numerical simulations, revealing that the intensity of the fundamental-frequency spectral component depends not only on the Berry connection but also on the energy shifts associated with the effective mass of electrons at the van Hove singularities. These results shed light on the complex generation mechanism of the ATAS in inversion-symmetry-broken materials.

    Physics Subject Headings (PhySH)

    Authorization Required

    We need you to provide your credentials before accessing this content.

    Supplemental Material (Subscription Required)

    References (Subscription Required)

    Outline

    Information

    Sign In to Your Journals Account

    Filter

    Filter

    Article Lookup

    Enter a citation