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January 16, 2026Chemical Reviews7 citations

Polarization-Sensitive Photoelectric Conversion

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SSSiwei SunJWJingxuan WeiJWJunyong Wang

Key Points

  • The aim is to establish a comprehensive framework for understanding polarization-sensitive photoelectric conversion.
  • Review existing mechanisms and material architectures related to polarization-sensitive photoelectric responses.
  • Develop a systematic structure to categorize responses based on light-field parameters and electronic degrees of freedom.
  • Analyze the impact of oblique incidence illumination on symmetry and polarization effects.
  • Outlined a comprehensive framework unifying various polarization-sensitive mechanisms.
  • Categorized photocurrent contributions into scalar and vector types based on symmetry analysis.
  • Highlighted the significant effects of oblique incidence on polarization-dependent responses.

Abstract

The photoelectric conversion process has traditionally been dominated by studies on light intensity, while the role of polarization remains an emerging and underexplored frontier. Despite the growing number of mechanisms and material architectures demonstrating polarization-sensitive photoelectric responses, a systematic framework to unify these findings is still lacking. This review establishes a comprehensive structure based on the photoelectric conversion pathway, spanning from multidimensional light-field parameters (including intensity, polarization angle, degree of polarization, and ellipticity) to electronic degrees of freedom (charge, momentum, spin, and valley) and ultimately to multidimensional electrical outputs (absorption scalars, current vectors). Leveraging symmetry analysis, we categorize polarization-sensitive photoelectric responses into scalar and vector photocurrent contributions, systematically examining material structures that exhibit the requisite symmetries. Special attention is given to oblique incidence illumination, which modulates symmetry and induces polarization-dependent effects. Finally, we outline the future research directions.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/6969d428940543b97770916bhttps://doi.org/10.1021/acs.chemrev.5c00693
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