Preventing and reversing vacuum-induced optical losses in high-finesse tantalum (V) oxide mirror coatings.

نویسندگان

  • Dorian Gangloff
  • Molu Shi
  • Tailin Wu
  • Alexei Bylinskii
  • Boris Braverman
  • Michael Gutierrez
  • Rosanna Nichols
  • Junru Li
  • Kai Aichholz
  • Marko Cetina
  • Leon Karpa
  • Branislav Jelenković
  • Isaac Chuang
  • Vladan Vuletić
چکیده

High-finesse optical cavities placed under vacuum are foundational platforms in quantum information science with photons and atoms. We study the vacuum-induced degradation of high-finesse optical cavities with mirror coatings composed of SiO₂-Ta₂O₅ dielectric stacks, and present methods to protect these coatings and to recover their initial low loss levels. For separate coatings with reflectivities centered at 370 nm and 422 nm, a vacuum-induced continuous increase in optical loss occurs if the surface-layer coating is made of Ta₂O₅, while it does not occur if it is made of SiO₂. The incurred optical loss can be reversed by filling the vacuum chamber with oxygen at atmospheric pressure, and the recovery rate can be strongly accelerated by continuous laser illumination at 422 nm. Both the degradation and the recovery processes depend strongly on temperature. We find that a 1 nm-thick layer of SiO₂ passivating the Ta₂O₅ surface layer is sufficient to reduce the degradation rate by more than a factor of 10, strongly supporting surface oxygen depletion as the primary degradation mechanism.

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عنوان ژورنال:
  • Optics express

دوره 23 14  شماره 

صفحات  -

تاریخ انتشار 2015