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Pseudospin-selective polarimetric singularities in high-harmonic generation of black phosphorus
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- Title
- Pseudospin-selective polarimetric singularities in high-harmonic generation of black phosphorus
- Issued Date
- 2026-03
- Citation
- PHYSICAL REVIEW B, v.113, no.12, pp.1 - 10
- Type
- Article
- Keywords
- Energy gap ; Excited states ; Harmonic generation ; Light polarization ; Black holes ; Black Phosphorus ; Multiphoton processes ; Optical pumping ; Phosphorus ; Polarimeters ; Angle resolved photoemission spectroscopy ; Electrons and holes ; Harmonic signals ; High harmonic generation ; Higher harmonics ; Hole state ; Optical- ; Pseudospin ; Pump polarization ; Time-resolved ; Harmonic analysis
- ISSN
- 2469-9950
- Abstract
-
Black phosphorus (BP) exhibits net opposite pseudospin polarizations for the electron and hole states. The pseudospin structure of BP causes a selectivity in the optical excitation engaging the symmetry between the optical pump polarization and the pseudospin state, which is confirmed in a simulation of the time-resolved angle-resolved photoemission spectroscopy (tr-ARPES). Further, the pseudospin selectivity is found to drive a unique polarimetric singularity in the high-harmonic generation (HHG). Given the nth-order high-harmonic signal, we reveal that the singularity arises predominantly through the multiphoton interband pathway and thereby becomes markedly substantial at n omega pump >= Eg. omega pump is the pump photon energy and Eg the energy gap of BP. This permits a coherent understanding of the pseudospin selectivity from tr-ARPES to HHG. In particular, the pseudospin-selective polarimetric singularity suggests a potential for the pseudospintronics to be integrated into the intrinsic dynamics due to the light-matter interaction in two-dimensional materials.
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- Publisher
- AMER PHYSICAL SOC
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