Single-electron states of phosphorus-atom arrays in silicon

Phys. Rev. B 109, 205412 (2024)

This work characterizes single-electron states of small phosphorus arrays in silicon using atomistic calculations and wave-function analysis. It connects realistic atomistic spectra with simplified hopping descriptions useful for analog quantum simulation.

Keywords: silicon dopants

Main result: phosphorus arrays in silicon exhibit hybridization patterns and tunneling amplitudes that can be mapped onto effective lattice Hamiltonians. Even compact arrays already show nontrivial multi-site coupling structure.

PDF: PhysRevB.109.205412.pdf

DOI: 10.1103/PhysRevB.109.205412

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