@article{41815,
  author       = {{Hämisch, Benjamin and Pollak, Roland and Ebbinghaus, Simon and Huber, Klaus}},
  issn         = {{2570-4206}},
  journal      = {{ChemSystemsChem}},
  keywords     = {{General Earth and Planetary Sciences, General Environmental Science}},
  number       = {{3}},
  publisher    = {{Wiley}},
  title        = {{{Thermodynamic Analysis of the Self‐Assembly of Pseudo Isocyanine Chloride in the Presence of Crowding Agents}}},
  doi          = {{10.1002/syst.202000051}},
  volume       = {{3}},
  year         = {{2021}},
}

@article{31400,
  author       = {{Goelz, C. and Mora, K. and Rudisch, J. and Gaidai, R. and Reuter, E. and Godde, B. and Reinsberger, Claus and Voelcker-Rehage, C. and Vieluf, S.}},
  issn         = {{0893-6080}},
  journal      = {{Neural Networks}},
  keywords     = {{Artificial Intelligence, Cognitive Neuroscience}},
  pages        = {{363--374}},
  publisher    = {{Elsevier BV}},
  title        = {{{Classification of visuomotor tasks based on electroencephalographic data depends on age-related differences in brain activity patterns}}},
  doi          = {{10.1016/j.neunet.2021.04.029}},
  volume       = {{142}},
  year         = {{2021}},
}

@article{31698,
  author       = {{Vieluf, S and Amengual-Gual, M and Zhang, B and El Atrache, R and Ufongene, C and Jackson, MC and Branch, S and Reinsberger, Claus and Loddenkemper, T}},
  issn         = {{0013-9580}},
  journal      = {{Epilepsia}},
  number       = {{4}},
  pages        = {{960--972}},
  title        = {{{Twenty-four-hour patterns in electrodermal activity recordings of patients with and without epileptic seizures.}}},
  volume       = {{62}},
  year         = {{2021}},
}

@article{31695,
  author       = {{Halle, M and Bloch, W and Niess, AM and Predel, HG and Reinsberger, Claus and Scharhag, J and Steinacker, J and Wolfarth, B and Scherr, J and Niebauer, J}},
  issn         = {{2573-8488}},
  journal      = {{Transl Sports Med}},
  number       = {{3}},
  pages        = {{310--318}},
  title        = {{{Exercise and sports after COVID-19-Guidance from a clinical perspective.}}},
  volume       = {{4}},
  year         = {{2021}},
}

@article{31699,
  author       = {{Bonke, EM and Southard, J and Buckley, TA and Reinsberger, Claus and Koerte, IK and Howell, DR}},
  issn         = {{1440-2440}},
  journal      = {{J Sci Med Sport}},
  number       = {{3}},
  pages        = {{247--257}},
  title        = {{{The effects of repetitive head impacts on postural control: A systematic review.}}},
  volume       = {{24}},
  year         = {{2021}},
}

@article{31704,
  author       = {{Krutsch, V and Krutsch, W and Härtl, J and Bloch, H and Alt, V and Klein, C and Reinsberger, Claus and Seiffert, R and Huber, L and Weber, J}},
  issn         = {{1932-6203}},
  journal      = {{PLoS One}},
  number       = {{8}},
  pages        = {{e0255695}},
  title        = {{{Head injuries in professional football (soccer): Results of video analysis verified by an accident insurance registry.}}},
  volume       = {{16}},
  year         = {{2021}},
}

@article{31706,
  author       = {{Brumann, C and Kukuk, M and Reinsberger, Claus}},
  issn         = {{1424-8220}},
  journal      = {{Sensors (Basel)}},
  number       = {{13}},
  pages        = {{4550}},
  title        = {{{Evaluation of Open-Source and Pre-Trained Deep Convolutional Neural Networks Suitable for Player Detection and Motion Analysis in Squash. }}},
  volume       = {{21}},
  year         = {{2021}},
}

@inproceedings{24547,
  abstract     = {{Over the last years, several approaches for the data-driven estimation of expected possession value (EPV) in basketball and association football (soccer) have been proposed. In this paper, we develop and evaluate PIVOT: the first such framework for team handball. Accounting for the fast-paced, dynamic nature and relative data scarcity of hand- ball, we propose a parsimonious end-to-end deep learning architecture that relies solely on tracking data. This efficient approach is capable of predicting the probability that a team will score within the near future given the fine-grained spatio-temporal distribution of all players and the ball over the last seconds of the game. Our experiments indicate that PIVOT is able to produce accurate and calibrated probability estimates, even when trained on a relatively small dataset. We also showcase two interactive applications of PIVOT for valuing actual and counterfactual player decisions and actions in real-time.}},
  author       = {{Müller, Oliver and Caron, Matthew and Döring, Michael and Heuwinkel, Tim and Baumeister, Jochen}},
  booktitle    = {{8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)}},
  keywords     = {{expected possession value, handball, tracking data, time series classification, deep learning}},
  location     = {{Online}},
  title        = {{{PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball using Tracking Data}}},
  year         = {{2021}},
}

@article{32437,
  author       = {{Sherman, David A. and Lehmann, Tim and Baumeister, Jochen and Grooms, Dustin R. and Norte, Grant E.}},
  issn         = {{0014-4819}},
  journal      = {{Experimental Brain Research}},
  keywords     = {{General Neuroscience}},
  number       = {{2}},
  pages        = {{407--420}},
  publisher    = {{Springer Science and Business Media LLC}},
  title        = {{{Somatosensory perturbations influence cortical activity associated with single-limb balance performance}}},
  doi          = {{10.1007/s00221-021-06260-z}},
  volume       = {{240}},
  year         = {{2021}},
}

@article{26889,
  author       = {{Luo, Kai Hong and Santandrea, Matteo and Stefszky, Michael and Sperling, Jan and Massaro, Marcello and Ferreri, Alessandro and Sharapova, Polina and Herrmann, Harald and Silberhorn, Christine}},
  issn         = {{2469-9926}},
  journal      = {{Physical Review A}},
  title        = {{{Quantum optical coherence: From linear to nonlinear interferometers}}},
  doi          = {{10.1103/physreva.104.043707}},
  year         = {{2021}},
}

@article{26283,
  author       = {{Lüders, Carolin and Pukrop, Matthias and Rozas, Elena and Schneider, Christian and Höfling, Sven and Sperling, Jan and Schumacher, Stefan and Aßmann, Marc}},
  issn         = {{2691-3399}},
  journal      = {{PRX Quantum}},
  title        = {{{Quantifying Quantum Coherence in Polariton Condensates}}},
  doi          = {{10.1103/prxquantum.2.030320}},
  year         = {{2021}},
}

@article{26284,
  author       = {{Bagrets, Dmitry and Kim, Kun Woo and Barkhofen, Sonja and De, Syamsundar and Sperling, Jan and Silberhorn, Christine and Altland, Alexander and Micklitz, Tobias}},
  issn         = {{2643-1564}},
  journal      = {{Physical Review Research}},
  title        = {{{Probing the topological Anderson transition with quantum walks}}},
  doi          = {{10.1103/physrevresearch.3.023183}},
  year         = {{2021}},
}

@article{29748,
  author       = {{Slawig, Diana and Gruschwitz, Markus and Gerstmann, Uwe and Rauls, Eva and Tegenkamp, Christoph}},
  issn         = {{1932-7447}},
  journal      = {{The Journal of Physical Chemistry C}},
  keywords     = {{Surfaces, Coatings and Films, Physical and Theoretical Chemistry, General Energy, Electronic, Optical and Magnetic Materials}},
  number       = {{36}},
  pages        = {{20087--20093}},
  publisher    = {{American Chemical Society (ACS)}},
  title        = {{{Adsorption and Reaction of PbPc on Hydrogenated Epitaxial Graphene}}},
  doi          = {{10.1021/acs.jpcc.1c06320}},
  volume       = {{125}},
  year         = {{2021}},
}

@article{37331,
  abstract     = {{<jats:p>High harmonic generation (HHG) from solids shows great application prospects in compact short-wavelength light sources and as a tool for imaging the dynamics in crystals with subnanometer spatial and attosecond temporal resolution. However, the underlying collision dynamics behind solid HHG is still intensively debated and no direct mapping relationship between the collision dynamics with band structure has been built. Here, we show that the electron and its associated hole can be elastically scattered by neighboring atoms when their wavelength approaches the atomic size. We reveal that the elastic scattering of electron/hole from neighboring atoms can dramatically influence the electron recombination with its left-behind hole, which turns out to be the fundamental reason for the anisotropic interband HHG observed recently in bulk crystals. Our findings link the electron/hole backward scattering with Van Hove singularities and forward scattering with critical lines in the band structure and thus build a clear mapping between the band structure and the harmonic spectrum. Our work provides a unifying picture for several seemingly unrelated experimental observations and theoretical predictions, including the anisotropic harmonic emission in MgO, the atomic-like recollision mechanism of solid HHG, and the delocalization of HHG in ZnO. This strongly improved understanding will pave the way for controlling the solid-state HHG and visualizing the structure-dependent electron dynamics in solids.</jats:p>}},
  author       = {{Zuo, Ruixin and Trautmann, Alexander and Wang, Guifang and Hannes, Wolf-Rüdiger and Yang, Shidong and Song, Xiaohong and Meier, Torsten and Ciappina, Marcelo and Duc, Huynh Thanh and Yang, Weifeng}},
  issn         = {{2765-8791}},
  journal      = {{Ultrafast Science}},
  publisher    = {{American Association for the Advancement of Science (AAAS)}},
  title        = {{{Neighboring Atom Collisions in Solid-State High Harmonic Generation}}},
  doi          = {{10.34133/2021/9861923}},
  volume       = {{2021}},
  year         = {{2021}},
}

@article{37338,
  abstract     = {{<jats:title>Abstract</jats:title><jats:p>Methylammonium lead iodide perovskite (MAPbI<jats:sub>3</jats:sub>) is renowned for an impressive power conversion efficiency rise and cost-effective fabrication for photovoltaics. In this work, we demonstrate that polycrystalline MAPbI<jats:sub>3</jats:sub>s undergo drastic changes in optical properties at moderate field strengths with an ultrafast response time, via transient Wannier Stark localization. The distinct band structure of this material - the large lattice periodicity, the narrow electronic energy bandwidths, and the coincidence of these two along the same high-symmetry direction – enables relatively weak fields to bring this material into the Wannier Stark regime. Its polycrystalline nature is not detrimental to the optical switching performance of the material, since the least dispersive direction of the band structure dominates the contribution to the optical response, which favors low-cost fabrication. Together with the outstanding photophysical properties of MAPbI<jats:sub>3</jats:sub>, this finding highlights the great potential of this material in ultrafast light modulation and novel photonic applications.</jats:p>}},
  author       = {{Berghoff, Daniel and Bühler, Johannes and Bonn, Mischa and Leitenstorfer, Alfred and Meier, Torsten and Kim, Heejae}},
  issn         = {{2041-1723}},
  journal      = {{Nature Communications}},
  keywords     = {{General Physics and Astronomy, General Biochemistry, Genetics and Molecular Biology, General Chemistry, Multidisciplinary}},
  number       = {{1}},
  publisher    = {{Springer Science and Business Media LLC}},
  title        = {{{Low-field onset of Wannier-Stark localization in a polycrystalline hybrid organic inorganic perovskite}}},
  doi          = {{10.1038/s41467-021-26021-4}},
  volume       = {{12}},
  year         = {{2021}},
}

@article{23477,
  author       = {{Thong, Le Huu and Ngo, Cong and Duc, Huynh Thanh and Song, Xiaohong and Meier, Torsten}},
  issn         = {{2469-9950}},
  journal      = {{Physical Review B}},
  pages        = {{085201}},
  title        = {{{Microscopic analysis of high harmonic generation in semiconductors with degenerate bands}}},
  doi          = {{10.1103/physrevb.103.085201}},
  volume       = {{103}},
  year         = {{2021}},
}

@article{21946,
  abstract     = {{Lithium niobate (LiNbO3), a material frequently used in optical applications, hosts different kinds of polarons that significantly affect many of its physical properties. In this study, a variety of electron polarons, namely free, bound, and bipolarons, are analyzed using first-principles calculations. We perform a full structural optimization based on density-functional theory for selected intrinsic defects with special attention to the role of symmetry-breaking distortions that lower the total energy. The cations hosting the various polarons relax to a different degree, with a larger relaxation corresponding to a larger gap between the defect level and the conduction-band edge. The projected density of states reveals that the polaron states are formerly empty Nb 4d states lowered into the band gap. Optical absorption spectra are derived within the independent-particle approximation, corrected by the GW approximation that yields a wider band gap and by including excitonic effects within the Bethe-Salpeter equation. Comparing the calculated spectra with the density of states, we find that the defect peak observed in the optical absorption stems from transitions between the defect level and a continuum of empty Nb 4d states. Signatures of polarons are further analyzed in the reflectivity and other experimentally measurable optical coefficients.}},
  author       = {{Schmidt, Falko and Kozub, Agnieszka L. and Gerstmann, Uwe and Schmidt, Wolf Gero and Schindlmayr, Arno}},
  issn         = {{2073-4352}},
  journal      = {{Crystals}},
  pages        = {{542}},
  publisher    = {{MDPI}},
  title        = {{{Electron polarons in lithium niobate: Charge localization, lattice deformation, and optical response}}},
  doi          = {{10.3390/cryst11050542}},
  volume       = {{11}},
  year         = {{2021}},
}

@inproceedings{43746,
  abstract     = {{Population/mixing-time-dependent two-dimensional coherent spectra are presented for exciton-polaritons in a microcavity. Theory based on dynamically-controlled truncation reveals coherent and incoherent contributions to the decay dynamics.}},
  author       = {{Meier, Torsten and Paul, Jagannath and Rose, Hendrik and Wahlstrand, Jared K and Bristow, Alan D}},
  booktitle    = {{Frontiers in Optics}},
  isbn         = {{978-1-55752-308-2}},
  location     = {{Washington, DC United States}},
  publisher    = {{Frontiers in Optics}},
  title        = {{{Coherent and incoherent contribution of population dynamics of semiconductor exciton-polaritons}}},
  doi          = {{10.1364/FIO.2021.FW5C.6}},
  year         = {{2021}},
}

@inproceedings{23474,
  author       = {{Reichelt, Matthias and Rose, Hendrik and Kosarev, Alexander N. and Poltavtsev, Sergey V. and Bayer, Manfred and Akimov, Ilya A. and Schneider, Christian and Kamp, Martin and Höfling, Sven and Meier, Torsten}},
  booktitle    = {{Ultrafast Phenomena and Nanophotonics XXV}},
  editor       = {{Betz, Markus and Elezzabi, Abdulhakem Y.}},
  title        = {{{Controlling the emission time of photon echoes by optical freezing of exciton dephasing and rephasing in quantum-dot ensembles}}},
  doi          = {{10.1117/12.2576887}},
  volume       = {{11684}},
  year         = {{2021}},
}

@article{23478,
  author       = {{Rose, Hendrik and Popolitova, D. V. and Tikhonova, O. V. and Meier, Torsten and Sharapova, Polina}},
  issn         = {{2469-9926}},
  journal      = {{Physical Review A}},
  title        = {{{Dark-state and loss-induced phenomena in the quantum-optical regime of Λ-type three-level systems}}},
  doi          = {{10.1103/physreva.103.013702}},
  volume       = {{103}},
  year         = {{2021}},
}

