English

Theory of magnetic circular dichroism spectroscopy technique in reflected light using an additional mirror

Optics 2025-12-01 v1 Instrumentation and Detectors

Abstract

The theory of the method of magnetic circular dichroism spectroscopy in reflected light (RMCD) has been developed using a simplified scheme without an analyzer, with the use of an additional mirror in the optical system and with the application of the method of phase modulation of the light wave using a photoelastic modulator. An additional mirror reflector, together with the mirror surface of the sample, forms a double mirror located between the pole pieces of a powerful laboratory electromagnet. The presence of an additional mirror leads to mixing of the amplitude (ΔR/R\Delta R/R) and phase (Δϕ\Delta \phi) RMCD-components in the amplitudes of the signals at the first and second harmonics of the phase modulation. It is shown that the RMCD spectroscopy technique using a simplified scheme and an additional mirror requires the synchronous measurement of three electrical signals proportional to the amplitudes of the corresponding terms in the expression for the total intensity of monochromatic radiation detected by the photodetector: a constant signal VdcV_{dc} and high-frequency amplitudes VfV_f and V2fV_{2f} at phase modulation frequencies ff and 2f2f. The ratios Vf/VdcV_f/V_{dc} and V2f/VdcV_2f/Vdc determine a system of linear equations for ΔR/R\Delta R/R and Δϕ\Delta \phi with known ellipsometric parameters tanΨ\tan\Psi and Δ\Delta of the additional mirror, which are found either from additional measurements using an ellipsometer or directly (in sity) using the RMCD spectrometer itself.

Keywords

Cite

@article{arxiv.2511.23324,
  title  = {Theory of magnetic circular dichroism spectroscopy technique in reflected light using an additional mirror},
  author = {Yuri Markin and Zoja Kun'kova},
  journal= {arXiv preprint arXiv:2511.23324},
  year   = {2025}
}