Publikationen aus dem Institut für Quantenoptik

Publikationen in den Arbeitsgruppen

HAUPTSTANDORT
ANDERE STANDORTE

Alle Publikationen des Instituts

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Anzahl der gefundenen Publikationen: 1078
  • Thiem, J.; Spelthann, S.; Neumann, L.; Johannes, H.-H.; Kowalsky, W.; Kracht, D.; Neumann, J.; Ruehl, A.; Ristau, D. (2020): Laseraktive Nanokristalle für Polymerfasern (POF)Berichte aus dem PhotonicNet, 1/2020, Garbsen: TEWISS-Verlag
    ISBN: 978-3-95900-442-8
    Proceeding
  • Kiedrowski, K.; Jakobs, F.; Kielhorn, J.; Johannes, H.-H.; Kowalsky, W.; Kracht, D.; Balasa, I.; Ristau, D. (2020): Laser-induced degradation and damage morphology in polymer optical fibersProc. SPIE 11355, Micro-Structured and Specialty Optical Fibres VI, 1135504
    DOI: 10.1117/12.2553999
    Proceeding
  • Spelthann, S.; Unland, S.; Thiem, J.; Jakobs, F.; Kielhorn, J.; Ang, P.Y.; Johannes, H.-H.; Kracht, D.; Neumann, J.; Ruehl, A.; Kowalsky, W.; Ristau, D. (2020): Towards Highly Efficient Polymer Fiber Laser Sources for Integrated Photonic SensorsSensors 2020, 20, 4086
    DOI: 10.3390/s20154086
    arXiv: 2006.10321
    Article
  • de Oliveira, V. S.; Ruehl, A.; Masłowski, P.; Hartl, I. (2020): Intensity Noise Optimization of a Mid-Infrared Frequency Comb Difference Frequency Generation SourceOptics Letters 45, 1914-1917
    DOI: 10.1364/OL.391195
    Article
  • Cheng, S.; Chatterjee, G.; Tellkamp, F.; Lang, T.; Ruehl, A.; Hartl, I.; Miller, R. J. D. (2020): Compact Ho:YLF-pumped ZnGeP2-based optical parametric amplifiers tunable in the molecular fingerprint regimeOptics Letters 45, 2255-2258
    DOI: 10.1364/OL.389535
    Article
  • Bose, S.; Reddy, H.; Fan, J.; Demircan, A.; Ruehl, A.; Morgner, U.; Roy, S.; Pal, M.; Bhadra, S.; Ghosh, D. (2020): Manipulation of Infrared Dispersive Wave in Customized Microstructured Optical Fibers for 1.7 and 2.0 um Light SourcesApplied Optics 59, 9015-9022
    DOI: 10.1364/AO.398966
    Article
  • C. Ufrecht, F. Di Pumpo, A. Friedrich, A. Roura, C. Schubert, D. Schlippert, E. M. Rasel, W. P. Schleich, and E. Giese (2020): Atom-interferometric test of the universality of gravitational redshift and free fallPhys. Rev. Research 2, 043240
    DOI: 10.1103/PhysRevResearch.2.043240
    arXiv: 2001.09754
    Article
  • Kai K. Voges, Philipp Gersema, Mara Meyer zum Alten Borgloh, Torben A. Schulze, Torsten Hartmann, Alessandro Zenesini, and Silke Ospelkaus (2020): Ultracold Gas of Bosonic 23Na39K Ground-State MoleculesPhysical Review Letters
    DOI: https://doi.org/10.1103/PhysRevLett.125.083401
    arXiv: 2008.05439
    Article
  • H. Albers, A. Herbst, L. L. Richardson, H. Heine, D. Nath, J. Hartwig, C. Schubert, C. Vogt, M. Woltmann, C. Lämmerzahl, S. Herrmann, W. Ertmer, E. M. Rasel, and D. Schlippert (2020): Quantum test of the Universality of Free Fall using rubidium and potassiumEur. Phys. J. D 74, 145
    DOI: 10.1140/epjd/e2020-10132-6
    arXiv: 2003.00939
    Article
  • O. Melchert, C. Brée, A. Tajalli, A. Pape, R. Arkhipov, S. Willms, I. Babushkin, D. Skryabin, G. Steinmeyer, U. Morgner, A. Demircan (2020): All-optical supercontinuum switchingComm. Phys.
    DOI: 10.1038/s42005-020-00414-1
    Article
  • J. R. C. Andrade, N. Modsching, A. Tajalli, C. M. Dietrich, S. Kleinert, F. Placzek, B. Kreipe, S. Schilt, V. J. Wittwer, T. Südmeyer, U. Morgner (2020): Carrier-envelope offset frequency stabilization of a thin-disk laser oscillator via depletion modulationIEEE Photonics Journal
    DOI: 10.1109/JPHOT.2020.2970858
    Article
  • M. Schilling, É. Wodey, L. Timmen, D. Tell, K. H. Zipfel, D. Schlippert, C. Schubert, E. M. Rasel, and J. Müller (2020): Vertical Gravity Profile in a 10 m Atom InterferometerJ. Geod. 94, 122 (2020)
    DOI: 10.1007/s00190-020-01451-y
    arXiv: 2003.04875
    Article
  • B. Meyer, A. Idel, F. Anders, J. Peise, C. Klempt (2020): Dynamical low-noise microwave source for cold atom experimentsarXiv:2003.10989 (2020).
    arXiv: 2003.10989
    Article
  • S. Bose, P. H. Reddy, J. Fan, A. Demircan, A. Ruehl, U. Morgner, S. Roy, M. Pal, S. K. Bhadra, and D. Ghosh (2020): Manipulation of infrared dispersive waves in customized microstructured optical fibers for 1.7 and 2.0 µm light sourcesApplied Optics 59, 9015-9022
    DOI: 10.1364/AO.398966
    Article
  • M. Raghunandan, F. Wolf, C. Ospelkaus, P. O. Schmidt, and H. Weimer (2020): Initialization of quantum simulators by sympathetic coolingSci. Adv. 6, eaaw9268 (2020)
    DOI: 10.1126/sciadv.aaw9268
    Article
  • D. Nitzschke, M. Schulte, M. Niemann, J. M. Cornejo, S. Ulmer, R. Lehnert, C. Ospelkaus, and K. Hammerer (2020): Elementary Laser‐Less Quantum Logic Operations with (Anti‐)Protons in Penning TrapsAdv. Quantum Technol. 3, 1900133 (2020)
    DOI: 10.1002/qute.201900133
    Article
  • A. Chu, J. Will, J. Arlt, C. Klempt, A.-M. Rey (2020): Simulation of XXZ Spin Models using Sideband Transitions in Trapped Bosonic GasesPhys. Rev. Lett. 125, 240504 (2020). Weitere Informationen
    DOI: 10.1103/PhysRevLett.125.240504
    arXiv: 2004.01282
    Article
  • E. Wodey, D. Tell, E. M. Rasel, D. Schlippert, R. Baur, U. Kissling, B. Kölliker, M. Lorenz, M. Marrer, U. Schläpfer, M. Widmer, C. Ufrecht, S. Stuiber, and P. Fierlinger (2020): A scalable high-performance magnetic shield for Very Long Baseline Atom InterferometryRev. Sci. Instrum. 91, 035117
    DOI: 10.1063/1.5141340
    arXiv: 1911.12320
    Article
  • Kai K. Voges, Philipp Gersema, Torsten Hartmann, Torben A. Schulze, Alessandro Zenesini, and Silke Ospelkaus (2020): Formation of ultracold weakly bound dimers of bosonic 23Na39KPhys. Rev. A 101, 042704
    DOI: 10.1103/PhysRevA.101.042704
    Article
  • L. L. Richardson, D. Nath, A. Rajagopalan, H. Albers, C. Meiners, C. Schubert, D. Tell, E. Wodey, S. Abend, M. Gersemann, W. Ertmer, E. M. Rasel, D. Schlippert, M. Mehmet, L. Kumanchik, L. Colmenero, R. Spannagel, C. Braxmaier, and F. Guzman (2020): Optomechanical resonator-enhanced atom interferometryCommun. Phys. 3, 208
    DOI: 10.1038/s42005-020-00473-4
    arXiv: 1902.02867
    Article