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Nonlinearity in drug pharmacokinetics is caused by various factors influencing how a drug is absorbed, distributed, metabolized, and excreted. Understanding these nonlinear processes is crucial for predicting drug behavior in the body and optimizing drug dosing regimens.
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In ordinary chemical reactions, the nucleus — which contains the protons and neutrons of each atom and thus identifies the element — remains unchanged. Electrons, however, can be added to atoms by transfer from other atoms, lost by transfer to other atoms, or shared with other atoms. The transfer and sharing of electrons among atoms govern the chemistry of the elements. During the formation of some compounds, atoms gain or lose electrons to form electrically charged particles called...
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Protein Engineering by Yeast Surface Display
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Surface-State Engineering for Generation of Nonlinear Charge and Spin Photocurrents.

Javier Sivianes1, Peio Garcia-Goiricelaya2, Daniel Hernangómez-Pérez3

  • 1Centro de Física de Materiales (CSIC-UPV/EHU), 20018, Donostia-San Sebastián, Spain.

Physical Review Letters
|January 20, 2026
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Summary

Researchers explore nonlinear photocurrents using spin-orbit split surface states, enabling DC flow on surfaces like Au(111). The Tl/Si(111) surface shows potential for optoelectronics and spin filtering.

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Area of Science:

  • Condensed Matter Physics
  • Materials Science
  • Surface Science

Background:

  • Nonlinear photocurrents are crucial for optoelectronic devices.
  • Spin-orbit interactions in surface states offer unique electronic properties.
  • Centrosymmetric materials typically lack net DC photocurrents.

Purpose of the Study:

  • To investigate the generation of nonlinear charge and spin photocurrents via spin-orbit split surface states.
  • To characterize these photocurrents in centrosymmetric systems like Au(111).
  • To identify and evaluate novel material systems for experimental verification.

Main Methods:

  • Theoretical modeling combined with density functional calculations.
  • Characterization of surface states and their relativistic properties.
  • Analysis of nonlinear charge and spin photocurrent generation.

Main Results:

  • Demonstrated net DC photocurrent generation in centrosymmetric Au(111) surface states.
  • Identified Tl/Si(111) as a promising material with metallic surface states and relativistic properties.
  • Observed distinct angular signatures and ferroelectric-like magnitudes for nonlinear charge photocurrents.
  • Achieved pure out-of-plane spin-polarized currents from surface states.

Conclusions:

  • Surface-state photocurrents hold significant potential for low-bias optoelectronic applications.
  • The Tl/Si(111) system offers a versatile platform for nonlinear spin-filtering functionalities.
  • This work expands the understanding of nonlinear electronic phenomena in surface states.