We investigate the 1/3 monolayer alpha-Pb/Si(111)) surface by scanning tunneling spectroscopy (STS) and fully relativistic first-principles calculations. We study both the high-temperature root 3 x root/3 and low-temperature 3 x3 reconstructions and show that, in both phases, the spin-orbit interaction leads to an energy splitting as large as 25% of the valence-band bandwidth. Relativistic effects, electronic correlations, and Pb-substrate interaction cooperate to stabilize a correlated low-temperature paramagnetic phase with well-developed lower and upper Hubbard bands coexisting with 3 x 3 periodicity. By comparing the Fourier transform of STS conductance maps at the Fermi level with calculated quasiparticle interference from nonmagnetic impurities, we demonstrate the occurrence of two large hexagonal Fermi sheets with in-plane spin polarizations and opposite helicities.

Chiral Spin Texture in the Charge-Density-Wave Phase of the Correlated Metallic Pb/Si(111) Monolayer / Tresca, Cesare; C., and Brun; C., and Bilgeri; T., and Menard; G., and Cherkez; V and, Federicci; R., and Longo; D., and Debontridder; F., and D'angelo; M., and Roditchev; D., and Profeta; G., and Calandra; M., and Cren. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 120:19(2018). [10.1103/PhysRevLett.120.196402]

Chiral Spin Texture in the Charge-Density-Wave Phase of the Correlated Metallic Pb/Si(111) Monolayer

Tresca;
2018

Abstract

We investigate the 1/3 monolayer alpha-Pb/Si(111)) surface by scanning tunneling spectroscopy (STS) and fully relativistic first-principles calculations. We study both the high-temperature root 3 x root/3 and low-temperature 3 x3 reconstructions and show that, in both phases, the spin-orbit interaction leads to an energy splitting as large as 25% of the valence-band bandwidth. Relativistic effects, electronic correlations, and Pb-substrate interaction cooperate to stabilize a correlated low-temperature paramagnetic phase with well-developed lower and upper Hubbard bands coexisting with 3 x 3 periodicity. By comparing the Fourier transform of STS conductance maps at the Fermi level with calculated quasiparticle interference from nonmagnetic impurities, we demonstrate the occurrence of two large hexagonal Fermi sheets with in-plane spin polarizations and opposite helicities.
2018
spin orbit coupling, quasiparticle interaction, surface states
01 Pubblicazione su rivista::01a Articolo in rivista
Chiral Spin Texture in the Charge-Density-Wave Phase of the Correlated Metallic Pb/Si(111) Monolayer / Tresca, Cesare; C., and Brun; C., and Bilgeri; T., and Menard; G., and Cherkez; V and, Federicci; R., and Longo; D., and Debontridder; F., and D'angelo; M., and Roditchev; D., and Profeta; G., and Calandra; M., and Cren. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 120:19(2018). [10.1103/PhysRevLett.120.196402]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1292145
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