4.7 Article

Vacancy-Hydrogen Interaction in Niobium during Low-Temperature Baking

Journal

SCIENTIFIC REPORTS
Volume 10, Issue 1, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/s41598-020-65083-0

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Funding

  1. BMBF [05H18GURB1]
  2. Impulse-und Networking fund of the Helmholtz Association [FKZ VH-VI-442 Memriox]
  3. Helmholtz Energy Materials Characterization Platform [03ET7015]
  4. [CZ.02.1.01/0.0/0.0/16_019/0000778]

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A recently discovered modified low-temperature baking leads to reduced surface losses and an increase of the accelerating gradient of superconducting TESLA shape cavities. We will show that the dynamics of vacancy-hydrogen complexes at low-temperature baking lead to a suppression of lossy nanohydrides at 2K and thus a significant enhancement of accelerator performance. Utilizing Doppler broadening Positron Annihilation Spectroscopy, Positron Annihilation Lifetime Spectroscopy and instrumented nanoindentation, samples made from European XFEL niobium sheets were investigated. We studied the evolution of vacancies in bulk samples and in the sub-surface region and their interaction with hydrogen at different temperature levels during in-situ and ex-situ annealing.

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