PhoenixD Forschung
Publikationen

Publikationen im Rahmen des Exzellenzclusters PhoenixD

Die Forschungsleistung des Exzellenzclusters PhoenixD zeigt sich in den zahlreichen Publikationen, die seit 2019 veröffentlicht wurden. Eine kontinuierlich aktualisierte Übersicht finden Sie auf dieser Seite. In externen Publikationsportalen können Sie nach Veröffentlichungen mit der Identifikationsnummer (Project-ID) 390833453 und dem Kürzel EXC-2122 suchen.

Zeige Ergebnisse 641 - 660 von 866

2020


Appi, E., Papadopoulou, C. C., Mapa, J. L., Wesavkar, N., Jusko, C., Mosel, P., Ališauskas, S., Lang, T., Heyl, C. M., Manschwetus, B., Brachmanski, M., Braune, M., Lindenblatt, H., Trost, F., Meister, S., Schoch, P., Treusch, R., Moshammer, R., Hartl, I., ... Kovacev, M. (2020). A synchronized VUV light source based on high-order harmonic generation at FLASH. Scientific Reports, 10(1), Artikel 6867. https://doi.org/10.1038/s41598-020-63019-2
Appi, E., Papadopoulou, C. C., Mapa, J., Wesavkar, N., Jusko, C., Mosel, P., Alisauskas, S., Lang, T., Heyl, C. M., Manschwetus, B., Braune, M., Brachmanski, M., Lindenblatt, H., Trost, F., Meister, S., Schoch, P., Treusch, R., Moshammer, R., Hartl, I., ... Kovacev, M. (2020). Synchronized HHG based source at FLASH. In High Intensity Lasers and High Field Phenomena, HILAS 2020 Artikel HTh1B.3 (OSA technical digest). OSA - The Optical Society. https://doi.org/10.1364/HILAS.2020.HTh1B.3
Appi, E., Papadopoulou, C. C., Mapa, J., Wesavkar, N., Jusko, C., Mosel, P., Alisauskas, S., Lang, T., Heyl, C. M., Manschwetus, B., Braune, M., Brachmanski, M., Lindenblatt, H., Trost, F., Meister, S., Schoch, P., Treusch, R., Moshammer, R., Hartl, I., ... Kovacev, M. (2020). Synchronized HHG based source at FLASH. In High Intensity Lasers and High Field Phenomena, HILAS 2020 Artikel HTh1B.3 (Optics InfoBase Conference Papers). Optica Publishing Group (formerly OSA). https://doi.org/10.1364/HILAS.2020.HTh1B.3
Arkhipov, R. M., Pakhomov, A. V., Arkhipov, M. V., Demircan, A., Morgner, U., Rosanov, N. N., & Babushkin, I. (2020). Coherently controlled generation of single-cycle terahertz pulses from a thin layer of nonlinear medium with low-frequency resonances. Physical Review A, 101(4), Artikel 043838. https://doi.org/10.1103/PhysRevA.101.043838
Arkhipov, R. M., Arkhipov, M. V., Shimko, A. A., Babushkin, I., Demircan, A., Morgner, U., & Rosanov, N. N. (2020). Experimental observation of rogue-waves in a system of dissipative self-induced transparency solitons in a Ti:sapphire laser. In Proceedings - International Conference Laser Optics 2020, ICLO 2020 (Proceedings - International Conference Laser Optics 2020, ICLO 2020). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/ICLO48556.2020.9309148
Arkhipov, R. M., Arkhipov, M. V., Babushkin, I., Pakhomov, A. V., & Rosanov, N. N. (2020). Generation of an Attosecond Pulse Based on Collective Spontaneous Radiation Emission of a Layer of Three-Level Atoms Excited by a Pair of Unipolar Pulses. Optics and spectroscopy, 128(11), 1857-1864. https://doi.org/10.1134/S0030400X20110028
Arkhipov, R. M., Arkhipov, M. V., Babushkin, I., Pakhomov, A. V., & Rosanov, N. N. (2020). Generation of an Attosecond Pulse in Helium Excited by Half-Cycle X-Ray Pulses. Optics and spectroscopy, 128(4), 529-535. https://doi.org/10.1134/S0030400X20040025
Arkhipov, R. M., Arkhipov, M. V., Pakhomov, A. V., Babushkin, I., Demircan, A., Morgner, U., & Rosanov, N. N. (2020). Generation of sub cycle terahertz pulses via coherent control of nonlinear medium by femtosecond pulses. Journal of Physics: Conference Series, 1571(1), Artikel 012009. https://doi.org/10.1088/1742-6596/1571/1/012009
Arkhipov, R. M., Arkhipov, M. V., Pakhomov, A. V., Babushkin, I., & Rosanov, N. N. (2020). Generation of unipolar pulses and their interaction with quantum systems. In 2020 International Conference Laser Optics (ICLO) Artikel 9285877 (International Conference Laser Optics). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/ICLO48556.2020.9285877
Arkhipov, R. M., Arkhipov, M. V., Shimko, A. A., Babushkin, I., & Rosanov, N. N. (2020). Mode Locking in Lasers due to Self-Induced Transparency: New Theoretical and Experimental Results. Bulletin of the Russian Academy of Sciences: Physics, 84, 23-26. https://doi.org/10.3103/S1062873820010049
Arkhipov, R., Pakhomov, A., Arkhipov, M., Demircan, A., Morgner, U., Rosanov, N., & Babushkin, I. (2020). Selective ultrafast control of multi-level quantum systems by subcycle and unipolar pulses. Optics express, 28(11), 17020-17034. https://doi.org/10.1364/OE.393142
Arkhipov, R. M., Arkhipov, M. V., Shimko, A. A., Babushkin, I., & Rosanov, N. N. (2020). Self-induced transparency mode-locking: Towards to single-cycle pulses. In Proceedings - International Conference Laser Optics 2020, ICLO 2020 Artikel 9285588 (International Conference Laser Optics). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/ICLO48556.2020.9285588
Arkhipov, M. V., Shimko, A. A., Rosanov, N. N., Babushkin, I., & Arkhipov, R. M. (2020). Self-induced-transparency mode locking in a Ti:sapphire laser with an intracavity rubidium cell. Physical Review A, 101(1), Artikel 013803. https://doi.org/10.1103/PhysRevA.101.013803
Armano, M., Audley, H., Baird, J., Binetruy, P., Born, M., Bortoluzzi, D., Castelli, E., Cavalleri, A., Cesarini, A., Cruise, A. M., Danzmann, K., De deus silva, M., Diepholz, I., Dixon, G., Dolesi, R., Ferraioli, L., Ferroni, V., Fitzsimons, E. D., Freschi, M., ... Zweifel, P. (2020). Spacecraft and interplanetary contributions to the magnetic environment on-board LISA Pathfinder. Monthly Notices of the Royal Astronomical Society, 494(2), 3014-3027. https://doi.org/10.1093/mnras/staa830
Babushkin, I., Morgner, U., & Demircan, A. (2020). Stability of quantum linear logic circuits against perturbations. Journal of Physics A: Mathematical and Theoretical, 53(44), Artikel A15. https://doi.org/10.1088/1751-8121/ab9da4
Bafekry, A., Stampfl, C., Akgenc, B., Mortazavi, B., Ghergherehchi, M., & Nguyen, C. V. (2020). Embedding of atoms into the nanopore sites of the C6N6 and C6N8 porous carbon nitride monolayers with tunable electronic properties. Physical Chemistry Chemical Physics, 22(11), 6418-6433. https://doi.org/10.1039/d0cp00093k
Baxter, J., Lesina, A. C., & Ramunno, L. (2020). Parallel FDTD Modeling of Nonlocality in Plasmonics. IEEE Transactions on Antennas and Propagation, 69(7), 3982 - 3994. https://doi.org/10.1109/TAP.2020.3044579
Baxter, J., Calà Lesina, A., & Ramunno, L. (2020). Parallel FDTD modelling of nonlocality in plasmonics. Vorabveröffentlichung online.
Bergmann, B., Denkena, B., Brühne, T., Krüger, R., Schumacher, T., Fuchs, J., & Schmidtmann, J.-P. (2020). Optimierte Zerspanung: magnetische Führung. Schweizer Maschinenmarkt (SMM), 121(20), 45-48.
Bin-Alam, M. S., Baxter, J., Awan, K. M., Kiviniemi, A., Mamchur, Y., Calà Lesina, A., Tsakmakidis, K. L., Huttunen, M. J., Ramunno, L., & Dolgaleva, K. (2020). Hyperpolarizability of plasmonic meta-atoms in metasurfaces. Vorabveröffentlichung online. https://arxiv.org/abs/2007.05142