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Time-resolved visualization of the magnetization canting induced by field-like spin–orbit torques
Finizio, S., Wintz, S., Mayr, S., Huxtable, A. J., Langer, M., Bailey, J., … Raabe, J. (2020). Time-resolved visualization of the magnetization canting induced by field-like spin–orbit torques. Applied Physics Letters, 117(21), 212404 (6 pp.). https://doi.org/10.1063/5.0029816
Soft x-ray microscopy with 7 nm resolution
Rösner, B., Finizio, S., Koch, F., Döring, F., Guzenko, V. A., Langer, M., … David, C. (2020). Soft x-ray microscopy with 7 nm resolution. Optica, 7(11), 1602-1608. https://doi.org/10.1364/OPTICA.399885
Coherent excitation of heterosymmetric spin waves with ultrashort wavelengths
Dieterle, G., Förster, J., Stoll, H., Semisalova, A. S., Finizio, S., Gangwar, A., … Wintz, S. (2019). Coherent excitation of heterosymmetric spin waves with ultrashort wavelengths. Physical Review Letters, 122(11), 117202 (8 pp.). https://doi.org/10.1103/PhysRevLett.122.117202
Electronic localization in CaVO<sub>3</sub> films via bandwidth control
McNally, D. E., Lu, X., Pelliciari, J., Beck, S., Dantz, M., Naamneh, M., … Schmitt, T. (2019). Electronic localization in CaVO3 films via bandwidth control. npj Quantum Materials, 4, 6 (7 pp.). https://doi.org/10.1038/s41535-019-0146-3
Exploiting atomic layer deposition for fabricating sub-10 nm X-ray lenses
Rösner, B., Koch, F., Döring, F., Bosgra, J., Guzenko, V. A., Kirk, E., … David, C. (2018). Exploiting atomic layer deposition for fabricating sub-10 nm X-ray lenses. Microelectronic Engineering, 191, 91-96. https://doi.org/10.1016/j.mee.2018.01.033