Acknowledgement

Gefördert durch die Deutsche Forschungsgemeinschaft (DFG) im Rahmen der Exzellenzstrategie des Bundes und der Länder – EXC 2123/2 QuantumFrontiers – 390837967


Funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany’s Excellence Strategy – EXC 2123/2 QuantumFrontiers – 390837967

Eine Publikation einreichen...
Einen Datensatz registrieren...
First 1 2 3 4 5 6 7 8 9 10 Last

2026


Gündoğan, M., Barzel, R., & Rätzel, D. (2026). Gravitational time dilation in quantum clock interferometry with entangled multi-photon states and quantum memories. Quantum Science and Technology, 11(4), Artikel 045047. https://doi.org/10.1088/2058-9565/aea2c3
Gnezdilov, V., Hofmann, S., Büscher, F., Ukolov, D., Wulferding, D., Lemmens, P., Möller, A., Felser, C., & Shekar, C. (2026). Comparing two isostructural Weyl semimetals with respect to phonon dynamics and resonance phenomena. Solid state sciences, 180, Artikel 108436. https://doi.org/10.1016/j.solidstatesciences.2026.108436
Cosgrove, T., Propper, M., Schmid, C., Goldobin, E., Koelle, D., Kleiner, R., Schilling, M., Hampel, B., & Taylor, R. (2026). Design and Performance of a 10-GHz HTS He-FIB JJ Mixer on LSAT Substrate. IEEE Transactions on Applied Superconductivity, 36(7), Artikel 1500910. https://doi.org/10.1109/TASC.2026.3684942
Csillag, L., Voicu, N., Elgendi, S., & Pfeifer, C. (2026). On the Finsler variational nature of autoparallels in metric-affine geometry. Classical and quantum gravity, 43(18), Artikel 185001. https://doi.org/10.1088/1361-6382/ae9f11
Schier, M., Richtmann, L., Staufenbiel, C., Schmale, T., Borcherding, D., Heurs, M., & Rosenhahn, B. (2026). Reinforcement learning for ion shuttling on trapped-ion quantum computers. Physical Review Research, 8(3), Artikel 033360. https://doi.org/10.1103/b7ck-8wh4
Leonhardt, M., Morgner, J., Abbass, F., Anjum, K. K., Arndt, B., Czampiel, R. P., Daehnhardt, N., Endoh, S., Imamura, T., Jäger, J. I., Kürschner, L., Latacz, B. M., Micke, P., Natakala, D., Rahner, R., Schweitzer, D., Stahl, S., Völksen, F., Yildiz, H., ... Smorra, C. (2026). Road transport of trapped antiprotons. NATURE, 657, 906-911. https://doi.org/10.1038/s41586-026-11019-z
Romeshkani, M., Müller, J., Ebadi, S., Kupriyanov, A., Knabe, A., Fletling, N., & Schilling, M. (2026). Machine Learning Algorithms for Transplanting Accelerometer Observations in Future Satellite Gravimetry Missions. Journal of Geodesy, 100, Artikel 83. https://doi.org/10.1007/s00190-026-02108-y, https://doi.org/10.48550/arXiv.2508.03522
Pizzocaro, M., Zyskind, C., Amy-Klein, A., Benkler, E., Bize, S., Calonico, D., Cantin, E., Chardonnet, C., Clivati, C., Condio, S., Curtis, E. A., Donadello, S., Dörscher, S., Feng, C.-H., Filzinger, M., Gaudron, J.-O., Godun, R. M., Goti, I., Hill, I. R., ... Tunesi, J. (2026). International optical clock comparison using the European optical fiber network. Physical Review Research, 8(3). https://doi.org/10.1103/l4bh-ryxs
Cole, G. D., Legero, T., Sterr, U., Lee, D., Ye, J., Gretarsson, A. M., Harry, G., Penn, S., Pinard, L., Menoni, C. S., Fejer, M. M., Wittwer, V. J., Fleisher, A. J., Demos, S. G., & Heckl, O. H. (2026). Redefining precision interferometry and spectroscopy with high-performance optical interference coatings. OPTICA, 13(8), 1488-1507. https://doi.org/10.1364/OPTICA.601572
Gorbar, E. V., Barabash, O. V., Gorkavenko, V. M., Korshynska, K., Momot, A. I., & Zaporozhchenko, A. O. (2026). Damping of dynamical friction force in self-interacting ultralight dark matter and Fornax timing problem. Classical and quantum gravity, 43(15), Artikel 155003. https://doi.org/10.1088/1361-6382/ae85a7
Makhdoumi Kakhaki, Z., Pokusinskyi, A. O., Avitabile, F., Kumar, A., Colangelo, F., Cirillo, C., Attanasio, C., & Dobrovoloskiy, O. (2026). Annealing-induced grain coarsening and voltage kinks in superconducting NbRe films. Physical Review B, 114(9). https://doi.org/10.1103/hhkw-ccv8
Ritter, P. J., Lin, Y., Pröpper, M., Tucholke, M. A., Roy, R. M., Mumme, J., Scheffler, M., Schilling, M., & Hampel, B. (2026). Investigation of YBCO Thin-Film Surface Impedance for THz Microscopy Using Josephson Junctions. IEEE Transactions on Applied Superconductivity, 36(5), Artikel 2401106. https://doi.org/10.1109/TASC.2026.3667811
Maria Marchese, M., Braun, D., Nimmrichter, S., & Rätzel, D. (2026). Cascaded optomechanical sensing for small signals. New journal of physics, 28(8), Artikel 084505. https://doi.org/10.1088/1367-2630/ae8b16
Glamazda, A., Gnezdilov, V., Peschanskii, A., & Lemmens, P. (2026). Raman spectroscopic study of phonon dynamics and structural evolution in BaBiO3. Low temperature physics, 52(8), 977-986. https://doi.org/10.1063/10.0044483
Poljakov, N., Schaper, J., Coenders, J. A., Hoffmann, P. L., Cornejo, J. M., Hammerer, K., Ulmer, S., & Ospelkaus, C. (2026). A robust method to reach the motional quantum regime of (anti-)protons in cryogenic multi-Penning traps. Quantum Science and Technology, 11(3), Artikel 035053. https://doi.org/10.1088/2058-9565/ae89df
Piest, B., Böhm, J., Estrampes, T., Guggilam, P., Pichery, A., Arciszewski, P., Bartosch, W., Boles, S., Döringshoff, K., Elsen, M., Hellmig, O., Kürbis, C., Leopoldt, D., Müller, G., Papakonstantinou, A., Reichelt, C., Wenzlawski, A., Wendrich, T., Charron, É., ... Rasel, E. M. (2026). Apparatus for quantum-mixture research in microgravity. Nature Communications, 17(1), Artikel 7573. https://doi.org/10.1038/s41467-026-75968-9
Meylahn, F., Vahlbruch, H., & Willke, B. (2026). Optimized thermal control of a dual-wavelength-resonant nonlinear cavity. Applied optics, 65(21), 7090-7095. https://doi.org/10.1364/ao.604992
Banks, H., Fuchs, E., & McCullough, M. (2026). Nuclear interferometer for ultralight dark matter detection. Physical Review D, 114(1), Artikel 015023. https://doi.org/10.1103/ntb7-6w5g
Rüffert, L. A., & Mehlstäubler, T. E. (2026). Shell formation and two-dimensional nanofriction in three-dimensional ion Coulomb crystals. Physical Review Research, 8(3), Artikel 033044. https://doi.org/10.1103/97sw-7x29
Meister, M., Müller, G., Boegel, P., Roura, A., Pichery, A., Reinhardt, D. B., Estrampes, T., Ströhle, J., Giese, E., Ahlers, H., Herr, W., Schubert, C., Charron, É., Müller, H., Williams, J. R., Rasel, E. M., Schleich, W. P., Gaaloul, N., & Bigelow, N. P. (2026). Magnetometry with a space-based differential atom interferometer. Nature Communications, 17(1), Artikel 6089. https://doi.org/10.1038/s41467-026-75230-2
Sevinçli, S., Rätzel, D., Krutzik, M., Oktel, M. Ö., & Gündoğan, M. (2026). Generation of squeezed optical states via stored classical pulses in a Bose gas. Physical Review Research, 8(3), Artikel 033016. https://doi.org/10.1103/89xy-86yz
Heinz, C., Recher, P., & Dominguez, F. (2026). Interedge backscattering in time-reversal symmetric quantum spin Hall Josephson junctions. SciPost Physics Core, 9(3), Artikel 042. https://doi.org/10.21468/SciPostPhysCore.9.3.042
Mahlau, Y., Augenstein, Y., Hughes, T., Lindauer, M., & Rosenhahn, B. (2026). Gradient-Informed Bayesian and Interior Point Optimization for Efficient Inverse Design in Nanophotonics. Optics Express, 34(13), 23160-23174. https://doi.org/10.1364/OE.600198
Grimpe, C. F., Lüßmann-Sorokina, A., Du, G., Sah, P., Sauer, S., Jordan, E., Thomas, R., Gehrmann, P., Lipkin, M., Suckow, S., Lemme, M. C., Kroker, S., Mehlstäubler, T. E., & Lemme, M. C. (2026). Benchmarking dual-polarization silicon nitride photonic integrated circuits for trapped-ion quantum technologies. Journal of the European Optical Society-Rapid Publications, 22(1), Artikel 56. https://doi.org/10.1051/jeos/2026049
Dawel, F., Pelzer, L., Dietze, K., Kramer, J., Hild, M., King, S. A., Spethmann, N. C. H., Klose, J., Stahl, K., Dörscher, S., Benkler, E., Lisdat, C., Porsev, S. G., Safronova, M. S., & Schmidt, P. O. (2026). High-stability optical clock based on a continuously ground-state cooled Al + ion without compromising its accuracy. Physical Review Research, 8(2), Artikel 023327. https://doi.org/10.1103/48zr-2t1p
Skelton, S. E. (2026). von Neumann measurement and quantum phase estimation of block-encoded Hamiltonians. Quantum Science and Technology, 11(3), Artikel 035014. https://doi.org/10.1088/2058-9565/ae7752
Faraji, S., & Hackmann, E. (2026). Null integrability and photon phenomenology in the accelerated Schwarzschild black hole. Physical Review D, 113(12), Artikel 124030. https://doi.org/10.1103/ffnb-n4nj
Wagner, N., Legero, T., & Kroker, S. (2026). Cordierite-based optical resonators with extremely low thermal expansion. Optical materials express, 16(6), 1587-1600. https://doi.org/10.1364/OME.599638
Schlake, E., Hackstein, J. P., Barzel, R., Hackmann, E., Rätzel, D., & Lämmerzahl, C. (2026). Frequency shifts due to relativistic effects and retardation in continuous-variable quantum key distribution. Physical Review Research, 8(2), Artikel 023236. https://doi.org/10.1103/kgn5-m8dj
Quensen, M., Hetzel, M., Santos, L., Smerzi, A., Tóth, G., Pezzè, L., & Klempt, C. (2026). Hong–Ou–Mandel interference of more than ten indistinguishable atoms. Nature Physics. Vorzeitige Online-Publikation. https://doi.org/10.1038/s41567-026-03302-7
Günther, J., Kirsten-Siemß, J.-N., Gaaloul, N., & Hammerer, K. (2026). Squeezing Enhancement in Lossy Multi-Path Atom Interferometers. Quantum, 10, Artikel 2122. https://doi.org/10.22331/q-2026-06-01-2122, https://doi.org/10.48550/arXiv.2409.04091
Berg, L., Mahlau, Y., & Rosenhahn, B. (2026). Multiagent reinforcement learning for discrete optimization of hole based photonic integrated circuits. in D. G. Smith, A. Erdmann, & N. P. Schmitt (Hrsg.), Computational Optics 2026 (S. 32). SPIE. https://doi.org/10.1117/12.3106930
Mahlau, Y., Berg, L., & Rosenhahn, B. (2026). Numerical field optimization for enhanced efficiency in time-reversible gradient computation of open-source GPU-accelerated FDTD simulations. in D. G. Smith, A. Erdmann, & N. P. Schmitt (Hrsg.), Computational Optics 2026 (S. 5). SPIE. https://doi.org/10.1117/12.3101101
Gaedtke, M., Shelling Neto, L., Talele, S., & Kroker, S. (2026). Simulations of Brownian thermal noise for arbitrarily shaped metasurfaces. in K. F. MacDonald, A. V. Zayats, & I. Staude (Hrsg.), Metamaterials XV (S. 22). SPIE. https://doi.org/10.1117/12.3099029
Johny, N., Junker, J., Schulte, B., Wilken, D., Hammerer, K., & Heurs, M. (2026). Realization of an All-Optical Effective Negative-Mass Oscillator for Coherent Quantum Noise Cancellation. PRX Quantum, 7(2), Artikel 020335. https://doi.org/10.1103/wdyd-bvkr
Frye-Arndt, K., Glaysher, M., Rhyno, B., Glaeser, M., Koch, M., Seckmeyer, S., Ahlers, H., Herr, W., Gaaloul, N., Schubert, C., & Rasel, E. M. (2026). Large and ultra-flat optical traps for uniform quantum gases. Scientific reports, 16(1), Artikel 15171. https://doi.org/10.1038/s41598-026-52493-9
Lüßmann, F., Hoormann, M., Hartmann, J., Meierhofer, F., & Waag, A. (2026). Distributed Bragg reflectors with porous GaN: Experimental assessment of effective medium approximations. Applied physics letters, 128(19), Artikel 192108. https://doi.org/10.1063/5.0324170
Mapa, J. L., Petersen, L., Theidel, D., Mosel, P., Fischer, C., Mathew, B., Froehlich, S., Weber, K. A., Oberta, P., Vahlbruch, J. W., Merdji, H., Morgner, U., & Kovacev, M. (2026). X-ray and electron emission from peeling adhesive tape. Applied physics letters, 128(19), Artikel 191101. https://doi.org/10.1063/5.0317330
Schneewind, M., Spiekermann, S., Wessels, P., Neumann, J., & Kracht, D. (2026). Spherical aberration compensation in Nd:YVO4 amplifiers. Optics express, 34(9), 16964-16969. https://doi.org/10.1364/OE.592520
Hackmann, E., Huckfeldt, M., Lämmerzahl, C., Philipp, D., & Rievers, B. (2026). General relativity and geodesy. International Journal of Modern Physics D, 35(6), Artikel 2540011. https://doi.org/10.1142/s0218271825400115
Jungclaus, J., Semenenko, B., Meierhofer, F., Szafranski, B., Garnweitner, G., & Voss, T. (2026). Lanthanide-Doped NaGdF4 Nanoparticles as Versatile Luminescent Labels for Cathodoluminescence Mapping. Physica Status Solidi (B): Basic Research, 263(4), Artikel e202500454. https://doi.org/10.1002/pssb.202500454
Prokhorov, L., Smith, A. A., Xu, M., Georgiou, K., Guarrera, V., Sajith, L. P. K., Dijck, E. A., Warnecke, C., Wehrheim, M., Wilzewski, A., Blackburn, L., Keller, M., Boyer, V., Pfeifer, T., Schwanke, U., Issever, C., Worm, S., Schmidt, P. O., López-Urrutia, J. R. C., & Barontini, G. (2026). Coulomb crystallization of xenon highly charged ions in a laser-cooled Ca+ matrix. Physical Review A, 113(4), Artikel L041102. https://doi.org/10.1103/lxr8-l7wq
Wei, D., Bode, C. H., Yamamoto, K., Lee, Y., Barranco, G. F., Müller, V., Álvarez, M. D., Delgado, J. J. E., & Heinzel, G. (2026). Experimental demonstration of an on-axis laser ranging interferometer for future gravity missions. Physical review applied, 25(4), Artikel 044039. https://doi.org/10.1103/5r3c-9n8z
Vybornyi, I., Chen, S., Spieß, L. J., Schmidt, P. O., & Hammerer, K. (2026). Line search by quantum logic spectroscopy enhanced with squeezing and statistical tests. Physical Review A, 113, Artikel 042613. https://doi.org/10.1103/gths-s15w
Murayama, K., Masuki, R., Tassel, C., Sakai, H., Yanagisawa, T., Yoshida, K., Oike, H., Yoshida, S., Gu, X., Ishida, K., Namba, M., Denisova, K., Dupray, V., Clevers, S., Mentré, O., Nomoto, T., Tadano, T., Brown, C. M., Lemmens, P., ... Kageyama, H. (2026). Lattice softening and diffusive dynamics in the polar metal LiReO3. Science advances, 12(14), Artikel eadt3886. https://doi.org/10.1126/sciadv.adt3886
Anttila, D., Bitzenbauer, P., Scheer, S., Tartaglia, D., Folkers, B., Goorney, S., Vartak, S., Sherson, J., & Toninelli, C. (2026). What makes a good quantum outreach video? An evaluation framework for a quantum video playlist. EPJ Quantum Technology, 13, Artikel 40. https://doi.org/10.1140/epjqt/s40507-025-00461-z
Rhyno, B., Sun, K., Bedessem, J., Gaaloul, N., Lundblad, N., & Vishveshwara, S. (2026). Shell-shaped Bose–Einstein condensates: Dynamics, excitations, and thermodynamics. AVS Quantum Science, 8(1), Artikel 010501. https://doi.org/10.1116/5.0320794
Korshynska, K., Gorbar, E. V., Bidasyuk, Y. M., Yakimenko, A. I., & Revaz, Y. (2026). Velocity dispersion profiles of dwarf spheroidal galaxies with self-interacting ultralight dark matter. Physical Review D, 113(6), 1-11. Artikel 063006. https://doi.org/10.1103/7fp7-klxf
Martínez-Lahuerta, V. J., Kirsten-Siemß, J.-N., Hammerer, K., & Gaaloul, N. (2026). Diffraction-phase-free Bragg atom interferometry. AVS Quantum Science, 8(1), Artikel 014404. https://doi.org/10.1116/5.0307499
Chamakhi, R., Marinica, D. C., Gaaloul, N., Charron, E., & Telmini, M. (2026). Fast momentum-selective transport of Bose–Einstein condensates via controlled nonadiabatic dynamics in optical lattices. AVS Quantum Science, 8(1), Artikel 014407. https://doi.org/10.1116/5.0304268

First 1 2 3 4 5 6 7 8 9 10 Last