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Production yield of rare-earth ions implanted into an optical crystal, , , , , , , , , and 2 other author(s). Applied Physics Letters, (2016)All-Optical Preparation of Coherent Dark States of a Single Rare Earth Ion Spin in a Crystal, , , , , , , , , and 1 other author(s). Physical review letters, 115 (9): 093602 (2015)Amorphous Silicon-Doped Titania Films for on-Chip Photonics, , , , , , , , , and 1 other author(s). ACS photonics, 4 (5): 1101-1107 (2017)Deterministic Single-Ion Implantation of Rare-Earth Ions for Nanometer-Resolution Color-Center Generation, , , , , , , , and . Physical Review Letters, 123 (10): 106802 (2019)Sensing Individual Nuclear Spins with a Single Rare-Earth Electron Spin, , , , , , and . Phys. Rev. Lett., 124 (17): 170402 (April 2020)Scalable production of solid-immersion lenses for quantum emitters in silicon carbide, , , , , , , and . Applied Physics Letters, 117 (2): 022105 (2020)Spectroscopy and engineering of single rare-earth solid-state qubits. Universität Stuttgart, Stuttgart, Dissertation, (2020)Spectroscopy properties of a single praseodymium ion in a crystal, , , , , , , and . New Journal of Physics, 22 (7): 073002 (2020)Tunable Microcavities Coupled to Rare-Earth Quantum Emitters, , , , , , , , , and 1 other author(s). (March 2022)R.K. acknowledges financial support by the DFG (Grant No. KO4999/3-1), and R. K. and J. W. acknowledge financial support by the FET- Flagship Project SQUARE, the EU via SMeL and QIA, as well as the DFG via FOR 2724 and GRK 2642. J. W. acknowledges BMBF, Q. Link.X Z. K.and L.K. acknowledges the financial support by the National Research, Development and Innovation Fund of Hungary within the Quantum Technology National Excellence Program (Project Nr. 2017-1.2.1-NKP-2017-00001.Production yield of rare-earth ions implanted into an optical crystal, , , , , , , , , and 2 other author(s). Applied physics letters, 108 (5): 053108 (2016)