PhoenixD Research
List of Publications

Publications in the Framework of the Cluster of Excellence PhoenixD

The research performance of the PhoenixD Cluster of Excellence is reflected in the numerous publications that have been published since 2019. A continuously updated overview can be found on this page. You can search for publications in external publication platforms with the identification number (Project ID) 390833453 and EXC-2122.

2020


Ecoto, E., Demircan, A., Babushkin, I., & Steinmeyer, G. (2020). Pseudo mode-locking. In CLEO: Science and Innovations 2020 Article SF2H.3 (Optics InfoBase Conference Papers; Vol. Part F183-CLEO-SI 2020). OSA - The Optical Society. https://doi.org/10.1364/CLEO_SI.2020.SF2H.3
Ecoto, E., Demircan, A., Babushkin, I., & Steinmeyer, G. (2020). Pseudo Mode-Locking. In 2020 Conference on Lasers and Electro-Optics, CLEO 2020 - Proceedings: Science and Innovations, CLEO_SI 2020 Article 9192913 (Conference Proceedings - Lasers and Electro-Optics Society Annual Meeting-LEOS; Vol. 2020-May). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1364/CLEO_SI.2020.SF2H.3
Endtmayer, B., Langer, U., Neitzel, I., Wick, T., & Wollner, W. (2020). Multigoal-oriented optimal control problems with nonlinear PDE constraints. Computers and Mathematics with Applications, 79(10), 3001-3026. https://doi.org/10.48550/arXiv.1903.02799, https://doi.org/10.1016/j.camwa.2020.01.005
Escoto, E., Demircan, A., Babushkin, I., & Steinmeyer, G. (2020). Demystifying semiconductor self-mode-locking without saturable absorber. In CLEO: Science and Innovations, CLEO 2020 Article STh3E.2 (Optics InfoBase Conference Papers; Vol. Part F183-CLEO-SI 2020). OSA - The Optical Society. https://doi.org/10.1364/CLEO_SI.2020.STh3E.2
Escoto, E., Demircan, A., Babushkin, I., & Steinmeyer, G. (2020). Demystifying Semiconductor Self-Mode-Locking without Saturable Absorber. In 2020 Conference on Lasers and Electro-Optics, CLEO 2020 - Proceedings Article STh3E.2 (Optics InfoBase Conference Papers; Vol. Part F183-CLEO-SI 2020). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1364/CLEO_SI.2020.STh3E.2
Evlyukhin, A. B., Tuz, V. R., Volkov, V. S., & Chichkov, B. N. (2020). Bianisotropy for light trapping in all-dielectric metasurfaces. Physical Review B, 101(20), Article 205415. https://doi.org/10.1103/PhysRevB.101.205415
Evlyukhin, A. B., Matiushechkina, M., Zenin, V. A., Heurs, M., & Chichkov, B. (2020). Lightweight metasurface mirror of silicon nanospheres [Invited]. Optical materials express, 10(10), 2706-2716. https://doi.org/10.1364/OME.409311, https://doi.org/10.15488/11391
Fan, J., Zhao, J., Shi, L., Xiao, N., & Hu, M. (2020). Two-channel, dual-beam-mode, wavelength-tunable femtosecond optical parametric oscillator. Advanced Photonics, 2(4), Article 045001. https://doi.org/10.1117/1.AP.2.4.045001
Fricke, D., Becker, A., Heratizadeh, A., Knigge, S., Jütte, L., Wollweber, M., Werfel, T., Roth, B. W., & Glasmacher, B. (2020). Mueller Matrix Analysis of Collagen and Gelatin Containing Samples Towards More Objective Skin Tissue Diagnostics. Polymers, 12(6), Article 1400. https://doi.org/10.3390/polym12061400
Fricke, D., Becker, A., Jütte, L., Wollweber, M., Glasmacher, B., & Roth, B. (2020). Non-contact fast Mueller matrix measurement system for investigation of bio-tissues. In B. Choi, & H. Zeng (Eds.), Photonics in Dermatology and Plastic Surgery 2020 Article 1121116 (Progress in Biomedical Optics and Imaging - Proceedings of SPIE; Vol. 11211). SPIE. https://doi.org/10.1117/12.2559623
Göbel, D., Rusch, P., Duvinage, D., Bigall, N. C., & Nachtsheim, B. J. (2020). Emission color-tunable oxazol(in)yl-substituted excited-state intramolecular proton transfer (ESIPT)-based luminophores. Chemical Communications, 56(98), 15430-15433. https://doi.org/10.1039/d0cc05780k
Grabe, T., Biermann, T., Bayerl, M., & Lachmayer, R. J. (2020). Anisotropic characteristics analysis of 3D-printed optics.
Huang, D., Fuhg, J. N., Weißenfels, C., & Wriggers, P. (2020). A machine learning based plasticity model using proper orthogonal decomposition. Computer Methods in Applied Mechanics and Engineering, 365, Article 113008. https://doi.org/10.1016/j.cma.2020.113008
Ivzhenko, L. I., Polevoy, S. Y., Tarapov, S. I., Yachin, V. V., Kurselis, K., Kiyan, R., & Chichkov, B. N. (2020). Experimental observation of tunable Wood type resonances in an all-ferrodielectric periodical metasurface. Optics letters, 45(19), 5514-5517. https://doi.org/10.1364/OL.402936
Jodlbauer, D., Langer, U., & Wick, T. (2020). Matrix-free multigrid solvers for phase-field fracture problems. Computer Methods in Applied Mechanics and Engineering, 372, Article 113431. https://doi.org/10.48550/arXiv.1902.08112, https://doi.org/10.1016/j.cma.2020.113431
Jusko, C., Sridhar, A., Appi, E., Shi, L., Morgner, U., & Kovacev, M. (2020). Femtosecond laser-induced plasma evolution studies via third-harmonic enhancement in atomic and molecular gases. In Compact EUV and X-ray Light Sources, EUVXRAY 2020 Article JW1A.15 (Optics InfoBase Conference Papers). OSA - The Optical Society. https://doi.org/10.1364/EUVXRAY.2020.JW1A.15
Jusko, C., Neoricic, L., Mikaelsson, S., Garmirian, F., Guo, C., Zhong, S., Major, B., Miranda, M., Morgner, U., L’Huillier, A., Couairon, A., Kovacev, M., & Arnold, C. L. (2020). Spatio-temporal characterization of a femtosecond filament along its length. In High Intensity Lasers and High Field Phenomena, HILAS 2020 Article HM1B.4 OSA - The Optical Society. https://opg.optica.org/abstract.cfm?uri=hilas-2020-HM1B.4
Kanngiesser, J., & Roth, B. (2020). Effect of image artefacts on phase conjugation with spectral domain optical coherence tomography. Optics Express, 28(12), 18224-18240. https://doi.org/10.1364/OE.393259
Kanngiesser, J., & Roth, B. (2020). Wavefront shaping concepts for application in optical coherence tomography—a review. Sensors (Switzerland), 20(24), 1-32. Article 7044. https://doi.org/10.3390/s20247044
Kanngießer, J. P. (2020). Wavefront shaping approaches for spectral domain optical coherence tomography. [Doctoral thesis, Leibniz University Hannover]. Leibniz Universität Hannover. https://doi.org/10.15488/10147