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Designing the stripe-ordered cuprate phase diagram through uniaxial-stress
Guguchia, Z., Das, D., Simutis, G., Adachi, T., Küspert, J., Kitajima, N., … Luetkens, H. (2024). Designing the stripe-ordered cuprate phase diagram through uniaxial-stress. Proceedings of the National Academy of Sciences of the United States of America PNAS, 121(1), e2303423120 (9 pp.). https://doi.org/10.1073/pnas.2303423120
Topological aspects of multi-k antiferromagnetism in cubic rare-earth compounds
Simeth, W., Rahn, M. C., Bauer, A., Meven, M., & Pfleiderer, C. (2024). Topological aspects of multi-k antiferromagnetism in cubic rare-earth compounds. Journal of Physics: Condensed Matter, 36(21), 215602. https://doi.org/10.1088/1361-648X/ad24bb
Reflective, polarizing, and magnetically soft amorphous neutron optics with <sup>11</sup>B-enriched B<sub>4</sub>C
Zubayer, A., Ghafoor, N., Thórarinsdóttir, K. A., Stendahl, S., Glavic, A., Stahn, J., … Eriksson, F. (2024). Reflective, polarizing, and magnetically soft amorphous neutron optics with 11B-enriched B4C. Science Advances, 10(7), eadl0402 (7 pp.). https://doi.org/10.1126/sciadv.adl0402
Domain state exchange bias in a single layer FeRh thin film formed via low energy ion implantation
Cress, C. D., van’t Erve, O., Prestigiacomo, J., LaGasse, S. W., Glavic, A., Lauter, V., & Bennett, S. P. (2023). Domain state exchange bias in a single layer FeRh thin film formed via low energy ion implantation. Journal of Materials Chemistry C, 11, 903-909. https://doi.org/10.1039/d2tc04014j
Revealing the orbital composition of heavy fermion quasiparticles in CeRu<sub>2</sub>Si<sub>2</sub>
Kramer, K. P., Tazai, R., von Arx, K., Horio, M., Küspert, J., Wang, Q., … Chang, J. (2023). Revealing the orbital composition of heavy fermion quasiparticles in CeRu2Si2. Journal of the Physical Society of Japan, 92(10), 104701 (6 pp.). https://doi.org/10.7566/JPSJ.92.104701
A microscopic Kondo lattice model for the heavy fermion antiferromagnet CeIn<sub>3</sub>
Simeth, W., Wang, Z., Ghioldi, E. A., Fobes, D. M., Podlesnyak, A., Sung, N. H., … Janoschek, M. (2023). A microscopic Kondo lattice model for the heavy fermion antiferromagnet CeIn3. Nature Communications, 14(1), 8239 (10 pp.). https://doi.org/10.1038/s41467-023-43947-z
Resonant elastic x-ray scattering of antiferromagnetic superstructures in EuPtSi<sub>3</sub>
Simeth, W., Bauer, A., Franz, C., Aqeel, A., Bereciartua, P. J., Sears, J. A., … Pfleiderer, C. (2023). Resonant elastic x-ray scattering of antiferromagnetic superstructures in EuPtSi3. Physical Review Letters, 130(26), 266701 (8 pp.). https://doi.org/10.1103/PhysRevLett.130.266701
<em>In situ</em> uniaxial pressure cell for x-ray and neutron scattering experiments
Simutis, G., Bollhalder, A., Zolliker, M., Küspert, J., Wang, Q., Das, D., … Janoschek, M. (2023). In situ uniaxial pressure cell for x-ray and neutron scattering experiments. Review of Scientific Instruments, 94, 013906 (7 pp.). https://doi.org/10.1063/5.0114892
Incommensurate antiferromagnetic order in CePtAl<sub>3</sub>
Stekiel, M., Čermák, P., Franz, C., Simeth, W., Weber, S., Ressouche, E., … Schneidewind, A. (2023). Incommensurate antiferromagnetic order in CePtAl3. Physical Review Research, 5, 013058 (9 pp.). https://doi.org/10.1103/PhysRevResearch.5.013058
Magnetic properties of the noncentrosymmetric tetragonal antiferromagnet EuPtSi<sub>3</sub>
Bauer, A., Senyshyn, A., Bozhanova, R., Simeth, W., Franz, C., Gottlieb-Schönmeyer, S., … Pfleiderer, C. (2022). Magnetic properties of the noncentrosymmetric tetragonal antiferromagnet EuPtSi3. Physical Review Materials, 6(3), 034406 (14 pp.). https://doi.org/10.1103/PhysRevMaterials.6.034406
Unveiling unequivocal charge stripe order in a prototypical cuprate superconductor
Choi, J., Wang, Q., Jöhr, S., Christensen, N. B., Küspert, J., Bucher, D., … Chang, J. (2022). Unveiling unequivocal charge stripe order in a prototypical cuprate superconductor. Physical Review Letters, 128(20), 207002 (7 pp.). https://doi.org/10.1103/PhysRevLett.128.207002
IMPACT conceptual design report
Eichler, R., Kiselev, D., Koschik, A., Knecht, A., van der Meulen, N., Scheibl, R., … Züllig, J. (2022). IMPACT conceptual design report. (PSI Bericht, Report No.: 22-01). Paul Scherrer Institut.
Crystal symmetry of stripe-ordered La<sub>1.88</sub>Sr<sub>0.12</sub>CuO<sub>4</sub>
Frison, R., Küspert, J., Wang, Q., Ivashko, O., Zimmermann, M. V., Meven, M., … Chang, J. (2022). Crystal symmetry of stripe-ordered La1.88Sr0.12CuO4. Physical Review B, 105(22), 224113 (8 pp.). https://doi.org/10.1103/PhysRevB.105.224113
Coexisting Kondo hybridization and itinerant <em>f</em>-electron ferromagnetism in UGe<sub>2</sub>
Giannakis, I., Sar, D., Friedman, J., Kang, C. J., Janoschek, M., Das, P., … Aynajian, P. (2022). Coexisting Kondo hybridization and itinerant f-electron ferromagnetism in UGe2. Physical Review Research, 4(2), L022030 (7 pp.). https://doi.org/10.1103/PhysRevResearch.4.L022030
<em>GenX 3</em>: the latest generation of an established tool
Glavic, A., & Björck, M. (2022). GenX 3: the latest generation of an established tool. Journal of Applied Crystallography, 55, 1063-1071. https://doi.org/10.1107/S1600576722006653
M-STAR: magnetism second target advanced reflectometer at the Spallation Neutron Source
Lauter, V., Wang, K., Mewes, T., Glavic, A., Toperverg, B., Ahmadi, M., … Sun, N. (2022). M-STAR: magnetism second target advanced reflectometer at the Spallation Neutron Source. Review of Scientific Instruments, 93(10), 103903 (14 pp.). https://doi.org/10.1063/5.0093622
Kondo quasiparticle dynamics observed by resonant inelastic x-ray scattering
Rahn, M. C., Kummer, K., Hariki, A., Ahn, K. H., Kuneš, J., Amorese, A., … Janoschek, M. (2022). Kondo quasiparticle dynamics observed by resonant inelastic x-ray scattering. Nature Communications, 13(1), 6129 (8 pp.). https://doi.org/10.1038/s41467-022-33468-6
Single-domain stripe order in a high-temperature superconductor
Simutis, G., Küspert, J., Wang, Q., Choi, J., Bucher, D., Boehm, M., … Mazzone, D. G. (2022). Single-domain stripe order in a high-temperature superconductor. Communications Physics, 5, 296 (7 pp.). https://doi.org/10.1038/s42005-022-01061-4
Uniaxial pressure induced stripe order rotation in La<sub>1.88</sub>Sr<sub>0.12</sub>CuO<sub>4</sub>
Wang, Q., von Arx, K., Mazzone, D. G., Mustafi, S., Horio, M., Küspert, J., … Chang, J. (2022). Uniaxial pressure induced stripe order rotation in La1.88Sr0.12CuO4. Nature Communications, 13, 1795 (6 pp.). https://doi.org/10.1038/s41467-022-29465-4
Topological magnon band structure of emergent Landau levels in a skyrmion lattice
Weber, T., Fobes, D. M., Waizner, J., Steffens, P., Tucker, G. S., Böhm, M., … Garst, M. (2022). Topological magnon band structure of emergent Landau levels in a skyrmion lattice. Science, 375(6584), 1025-1030. https://doi.org/10.1126/science.abe4441
 

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