Zhang, B., Teng, B., Zhong, D., Zhang, S., Wang, C., Li, Y., Zhuang, S., Ma, J., Li, J., Xu, H., & Rupp, R. A. (2013). Growth and laser operation of Yb-doped mixed vanadate crystals. Optics and Laser Technology, 54, 367-370. https://doi.org/10.1016/j.optlastec.2013.06.020

Cser, L., Krexner, G., Markó, M., & Szakál, A. (2013). Neutron holographic imaging with picometer accuracy. In K. D. Sattler (Ed.), Fundamentals of Picoscience (pp. 161-178). CRC Press Taylor & Francis Group. https://doi.org/10.1201/b15523-13

Cser, L., Krexner, G., & Markó, M. (2013). Neutron Holography as a Technique for Probing Local Atomic Structures on the Nanoscale. In R. Kohli, & K. L. Mittal (Eds.), Developments in surface contamination and cleaning: Volume five: Contaminant Removal and Monitoring (pp. 191-217). Article 5 Elsevier. https://doi.org/10.1016/B978-1-4377-7881-6.00005-3

Salehi Ravesh, M., Brix, G., Laun, F. B., Kuder, T. A., Puderbach, M. U., Ley-Zaporozhan, J., Ley, S., Fieselmann, A., Herrmann, M. F., Schranz, W., Semmler, W., & Risse, F. (2013). Quantification of pulmonary microcirculation by dynamic contrast-enhanced magnetic resonance imaging: Comparison of four regularization methods. Magnetic Resonance in Medicine, 69(1), 188-199. https://doi.org/10.1002/mrm.24220

Fally, M., Klepp, J., Geltenbort, P., Pruner, C., & Tomita, Y. (2013). Slow-neutron mirrors from holographic nanoparticle-polymer composites. In G. Cicognani, & H. Schober (Eds.), Institut Laue-Langevin Annual Report 2013 (pp. 86-87). ILL. http://www.ill.eu/fileadmin/users_files/Annual_Report/AR-13/catalogue/

Baro, J., Corral, A., Illa, X., Planes, A., Salje, E. K. H., Schranz, W., Soto-Parra, D. E., & Vives, E. (2013). Statistical Similarity between the Compression of a Porous Material and Earthquakes. Physical Review Letters, 110(8), Article 088702. https://doi.org/10.1103/PhysRevLett.110.088702

Goian, V., Kamba, S., Pacherová, O., Drahokoupil, J., Palatinus, L., Dusek, M., Rohlícek, J., Savinov, M., Laufek, F., Schranz, W., Fuith, A., Kachlík, M., Máca, K., Shkabko, A., Sagarna, L., Weidenkaff, A., & Belik, A. A. (2012). Antiferrodistortive phase transition in EuTiO3. Physical Review B, 86(5), Article 054112. https://doi.org/10.1103/PhysRevB.86.054112

Gao, P., Yao, B., Rupp, R., Min, J., Guo, R., Ma, B., Zheng, J., Lei, M., Yan, S., Dan, D., & Ye, T. (2012). Autofocusing based on wavelength dependence of diffraction in two-wavelength digital holographic microscopy. Optics Letters, 37(7), 1172-1174. https://doi.org/10.1364/OL.37.001172


Zhang, Z., Church, N., Lappe, S.-C., Reinecker, M., Fuith, A., Saines, P. J., Harrison, R. J., Schranz, W., & Carpenter, M. A. (2012). Elastic and anelastic anomalies associated with the antiferromagnetic ordering transition in wüstite, FexO. Journal of Physics: Condensed Matter, 24(21), Article 215404. https://doi.org/10.1088/0953-8984/24/21/215404

Hasegawa, Y., Schmitzer, C., Bartosik, H., Klepp, J., Sponar, S., Durstberger-Rennhofer, K., & Badurek, G. (2012). Falsification of Leggett's model using neutron matter waves. New Journal of Physics, 14, Article 023039. https://doi.org/10.1088/1367-2630/14/2/023039

Dong, Y., Liu, S.-G., Kong, Y.-F., Chen, S.-L., Rupp, R., & Xu, J.-J. (2012). Fast photorefractive response of vanadium-doped lithium niobate in the visible region. Optics Letters, 37(11), 1841-1843. https://doi.org/10.1364/OL.37.001841