First-Principles Analysis of Chirality-Induced Spin Selectivity at Molecule-Metal Interfaces in Photoemission
arXiv:2603.22725 · doi:10.1021/acs.nanolett.6c01438
Abstract
Spin-resolved photoelectron spectroscopy (PES) probes chirality-induced spin selectivity (CISS), yet it remains unclear whether the measured spin polarization reflects molecular chirality itself or the broader electronic structure of the hybrid interface. We present a first-principles analysis of PES spin polarization at chiral molecule-metal interfaces, treating the interface holistically rather than as a metal substrate plus a separate molecular spin filter/polarizer. Using density functional theory within a three-step photoemission framework, we compute the spin polarization generated in the optical-excitation step for ()- and ()-heptahelicene adsorbed on Au(111) and Cu(111), and for coronene/Au(111) as a non-chiral control. We find that adsorption strongly reshapes the PES spin polarization relative to the clean metal surface, but opposite enantiomers yield symmetry-related responses. These results indicate that changes in the PES spin polarization are more naturally attributed to the electronic structure of the hybrid interface than to molecular chirality alone.
References in corpus (14)
- Angle-resolved photoemission spectroscopy of the cuprate superconductors
- BerkeleyGW: A Massively Parallel Computer Package for the Calculation of the Quasiparticle and Optical Properties of Materials and Nanostructures
- Renormalization of Molecular Electronic Levels at Metal-Molecule Interfaces
- Spin-Selective Transport of Electron in DNA Double Helix
- Spin selective transport through helical molecular systems
- Observation of a warped helical spin-texture in BiSe from circular dichroism angle-resolved photoemission spectroscopy
- Induced spin filtering in electron transmission through chiral molecular layers adsorbed on metals with strong spin-orbit coupling
- Charge Redistribution and Spin Polarization Driven by Correlation Induced Electron Exchange in Chiral Molecules
- Spin Polarization of Photoelectrons from Topological Insulators
- Unusual Spin Polarization in the Chirality Induced Spin Selectivity
- Accelerating -Based Energy Level Alignment Calculations for Molecule-Metal Interfaces Using a Substrate Screening Approach
- Effective Hamiltonian model for helically constrained quantum systems within adiabatic perturbation theory: application to the Chirality-Induced Spin Selectivity (CISS) Effect
- Many-Body Models for Chirality-Induced Spin Selectivity in Electron Transfer
- Dynamical theory of chiral-induced spin selectivity in electron donor-chiral molecule-acceptor systems