High Verdet Constant Glass for Magnetic Field Sensors.

ACS Appl Mater Interfaces

State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.

Published: December 2022

AI Article Synopsis

  • Rare-earth ion-doped glasses show potential in magneto-optical applications due to their high transparency and Verdet constant, but valence state variations in rare-earth ions can hurt their performance.
  • A new strategy was developed to prevent the oxidation of terbium (Tb) ions and enhance thermal stability by adjusting the glass network's properties, allowing for a record effective concentration of Tb ions.
  • This research resulted in a high Verdet constant and the first use of magneto-optical glass in magnetic field sensors, achieving notable sensitivity and paving the way for advanced magnetic sensing technologies.

Article Abstract

Due to the high transparency, high Verdet constant, as well as easy processing properties, rare-earth ion-doped glasses have demonstrated great potential in magneto-optical (MO) applications. However, the variation in the valence state of rare-earth ions (Tb to Tb) resulted in the decreased effective concentration of the paramagnetic ions and thus degraded MO performance. Here, a strategy was proposed to inhibit the oxidation of Tb into Tb as well as improve the thermal stability by tuning the optical basicity of glass networks. Moreover, the depolymerization of the glass network was modulated to accommodate more Tb ions. Thus, a record high effective concentration (14.19 × 10/cm) of Tb ions in glass was achieved, generating a high Verdet constant of 113 rad/(T·m) at 650 nm. Lastly, the first application of MO glass for magnetic field sensors was demonstrated, achieving a sensitivity of 0.139 rad/T. We hope our work provides guidance for the fabrication of MO glass with high performance and thermal stability and could push MO glass one step further for magnetic sensing applications.

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Source
http://dx.doi.org/10.1021/acsami.2c18119DOI Listing

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