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January 22, 2026Micromachines0 citationsOpen Access

Metamaterial Incident Photon Reconstruction Theory Based on Resonant Dipole Phase

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BXBoli XuRZRenbin Zhong

Key Points

  • The research aims to develop a theory to understand how metamaterials affect incident photons using specific modulation processes.
  • Developed the Metamaterial Incident Photon Reconstruction Theory (MIPRT)
  • Introduced the Invariant Incident Photon Hypothesis
  • Validated the theory using simulations in a single-layer metamaterial
  • Derived a relationship between resonant phase and amplitude
  • Revealed modulation characteristics via coherent destructive interference
  • Demonstrated redistribution of spatial probability for photon occurrence
  • Confirmed the resonant phase and amplitude relationship through simulations

Abstract

In this study, a Metamaterial Incident Photon Reconstruction Theory (MIPRT) is developed to describe the modulation process of metamaterials on incident photons. The theory includes the Invariant Incident Photon Hypothesis and Resonant Phase Deconstruction and Quantification; it reveals the modulation characteristics of metamaterials on incident photons, not by first absorption and then re-emission but by inducing coherent destructive interference, which brings about redistribution of the spatial probability of photon occurrence. This theory is validated in a single-layer metamaterial, and a unique relationship between the resonant phase and amplitude is derived and confirmed by simulation. The proposed MIPRT brings a comprehensive understanding of the electromagnetic (EM) response characteristics of metamaterials and provides a new idea for metamaterial theory from another perspective.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6971be6b642b1836717e30f9https://doi.org/10.3390/mi17010130
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