English

Fundamental residual amplitude modulation in electro-optic modulators

Instrumentation and Detectors 2021-04-20 v5 Optics

Abstract

The residual amplitude modulation (RAM\mathrm{RAM}) is the undesired, non-zero amplitude modulation that usually occurs when a phase modulation based on the electro-optic effect is imprinted on a laser beam. In this work, we show that electro-optic modulators (EOMs) that are used to generate the sidebands on the laser beam also generate a RAM\mathrm{RAM} in the optical setup. This result contradicts standard textbooks, which assume the amplitude remains unchanged in the process and should be considered as a fundamental RAM\mathrm{RAM} (RAMF\mathrm{RAM_{F}}) for these devices. We present a classical model for the propagation of an infrared laser with frequency ω0\omega_{0} in a wedge-shaped crystal and an EOM with an RF modulating signal of frequency Ω\Omega. Since Ωω0{\Omega}\ll \omega_{0}, we solve Maxwell's equations in a time-varying media via a WKB approximation and we write the electromagnetic fields in terms of quasi-plane waves. From the emerging fields of the setup, we compute the associated RAMF\mathrm{RAM_{F}} and show that it depends on the phase-modulation depth mm and the quotient (Ωω0)\left(\frac{\Omega}{\omega_{0}}\right). The RAMF\mathrm{RAM_{F}} values obtained for the EOMs used in gravitational wave detectors are presented. Finally, the cancellation of RAMF\mathrm{RAM_{F}} is analyzed.

Cite

@article{arxiv.1710.10719,
  title  = {Fundamental residual amplitude modulation in electro-optic modulators},
  author = {Alfredo E. Domínguez and Walter E. Ortega Larcher and Carlos N. Kozameh},
  journal= {arXiv preprint arXiv:1710.10719},
  year   = {2021}
}

Comments

10 pages, 3 figures

R2 v1 2026-06-22T22:29:08.959Z