@article{42078,
  author       = {{Knorn, S. and Dey, S. and Ahlén, A. and Quevedo, D. E.}},
  journal      = {{TSP}},
  number       = {{11}},
  pages        = {{2848–2863}},
  title        = {{{Distortion Minimization in Multi-Sensor Estimation Using Energy Harvesting and Energy Sharing}}},
  volume       = {{63}},
  year         = {{2015}},
}

@article{42077,
  author       = {{Wu, J. and Li, Y. and Quevedo, D. E. and Lau, V. and Shi, L.}},
  journal      = {{AUTO}},
  number       = {{4}},
  pages        = {{332–339}},
  title        = {{{Data-driven power control for state estimation: A Bayesian inference approach}}},
  volume       = {{54}},
  year         = {{2015}},
}

@inproceedings{42023,
  author       = {{ Jöns, Klaus D. and U. Rengstl, U and Ostermann, M and Hargart, F and Heldmaier, M and Bounouar, S and  Ulrich, S.M and  Jetter, M and Michler, P}},
  title        = {{{Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources}}},
  year         = {{2015}},
}

@article{8168,
  abstract     = {{Tensor networks are a central tool in condensed matter physics. In this paper, we initiate the study of tensor network non-zero testing (TNZ): Given a tensor network T, does T represent a non-zero vector? We show that TNZ is not in the Polynomial-Time Hierarchy unless the hierarchy collapses. We next show (among other results) that the special cases of TNZ on non-negative and injective tensor networks are in NP. Using this, we make a simple observation: The commuting variant of the MA-complete stoquastic k-SAT problem on D-dimensional qudits is in NP for logarithmic k and constant D. This reveals the first class of quantum Hamiltonians whose commuting variant is known to be in NP for all (1) logarithmic k, (2) constant D, and (3) for arbitrary interaction graphs.
}},
  author       = {{Gharibian, Sevag and Landau, Zeph and Woo Shin, Seung and Wang, Guoming}},
  journal      = {{Quantum Information & Computation}},
  number       = {{9{\&}10}},
  pages        = {{885--899}},
  title        = {{{Tensor network non-zero testing}}},
  volume       = {{15}},
  year         = {{2015}},
}

@article{13935,
  abstract     = {{Recently, a new class of nonlinear systems was introduced, in which the self-trapping of fundamental and vortical localized modes in space of dimension D is supported by cubic self-repulsion with a strength growing as a function of the distance from the center, r, at any rate faster that rD. These systems support robust 2D and 3D modes which either do not exist or are unstable in other nonlinear systems. Here we demonstrate a possibility to create solitary vortices in this setting by applying a phase-imprinting torque to the ground state. Initially, a strong torque completely destroys the ground state. However, contrary to usual systems, where the destruction is irreversible, the present ones demonstrate a rapid restabilization and the creation of one or several shifted vortices orbiting the center. For the sake of comparison, we show analytically that, in the linear system with a 3D trapping potential, the action of a torque on the ground state is inefficient and creates only even-vorticity states with a small probability.}},
  author       = {{Driben, Rodislav and Meier, Torsten and Malomed, Boris A.}},
  issn         = {{2045-2322}},
  journal      = {{Scientific Reports}},
  title        = {{{Creation of vortices by torque in multidimensional media with inhomogeneous defocusing nonlinearity}}},
  doi          = {{10.1038/srep09420}},
  volume       = {{5}},
  year         = {{2015}},
}

@article{22944,
  abstract     = {{Recently, a new class of nonlinear systems was introduced, in which the self-trapping of fundamental and vortical localized modes in space of dimension D is supported by cubic self-repulsion with a strength growing as a function of the distance from the center, r, at any rate faster that rD. These systems support robust 2D and 3D modes which either do not exist or are unstable in other nonlinear systems. Here we demonstrate a possibility to create solitary vortices in this setting by applying a phase-imprinting torque to the ground state. Initially, a strong torque completely destroys the ground state. However, contrary to usual systems, where the destruction is irreversible, the present ones demonstrate a rapid restabilization and the creation of one or several shifted vortices orbiting the center. For the sake of comparison, we show analytically that, in the linear system with a 3D trapping potential, the action of a torque on the ground state is inefficient and creates only even-vorticity states with a small probability.}},
  author       = {{Driben, Rodislav and Meier, Torsten and Malomed, Boris A.}},
  issn         = {{2045-2322}},
  journal      = {{Scientific Reports}},
  title        = {{{Creation of vortices by torque in multidimensional media with inhomogeneous defocusing nonlinearity}}},
  doi          = {{10.1038/srep09420}},
  volume       = {{5}},
  year         = {{2015}},
}

@article{13926,
  abstract     = {{We predict a variety of composite quiescent and spinning two- and three-dimensional (2D and 3D) self-trapped modes in media with a repulsive nonlinearity whose local strength grows from center to periphery. These are 2D dipoles and quadrupoles, and 3D octupoles, as well as vortex–antivortex pairs and quadruplets. Unlike other multidimensional models, where such complex bound states either do not exist or are subject to strong instabilities, these modes are remarkably robust in the present setting. The results are obtained by means of numerical methods and analytically, using the Thomas–Fermi approximation. The predicted states may be realized in optical and matter-wave media with controllable cubic nonlinearities}},
  author       = {{Driben, Rodislav and Dror, Nir and Malomed, Boris A and Meier, Torsten}},
  issn         = {{1367-2630}},
  journal      = {{New Journal of Physics}},
  title        = {{{Multipoles and vortex multiplets in multidimensional media with inhomogeneous defocusing nonlinearity}}},
  doi          = {{10.1088/1367-2630/17/8/083043}},
  volume       = {{17}},
  year         = {{2015}},
}

@article{13932,
  abstract     = {{We predict a variety of composite quiescent and spinning two- and three-dimensional (2D and 3D) self-trapped modes in media with a repulsive nonlinearity whose local strength grows from center to periphery. These are 2D dipoles and quadrupoles, and 3D octupoles, as well as vortex–antivortex pairs and quadruplets. Unlike other multidimensional models, where such complex bound states either do not exist or are subject to strong instabilities, these modes are remarkably robust in the present setting. The results are obtained by means of numerical methods and analytically, using the Thomas–Fermi approximation. The predicted states may be realized in optical and matter-wave media with controllable cubic nonlinearities}},
  author       = {{Driben, Rodislav and Dror, Nir and Malomed, Boris A and Meier, Torsten}},
  issn         = {{1367-2630}},
  journal      = {{New Journal of Physics}},
  title        = {{{Multipoles and vortex multiplets in multidimensional media with inhomogeneous defocusing nonlinearity}}},
  doi          = {{10.1088/1367-2630/17/8/083043}},
  volume       = {{17}},
  year         = {{2015}},
}

@article{22948,
  abstract     = {{We predict a variety of composite quiescent and spinning two- and three-dimensional (2D and 3D) self-trapped modes in media with a repulsive nonlinearity whose local strength grows from center to periphery. These are 2D dipoles and quadrupoles, and 3D octupoles, as well as vortex–antivortex pairs and quadruplets. Unlike other multidimensional models, where such complex bound states either do not exist or are subject to strong instabilities, these modes are remarkably robust in the present setting. The results are obtained by means of numerical methods and analytically, using the Thomas–Fermi approximation. The predicted states may be realized in optical and matter-wave media with controllable cubic nonlinearities}},
  author       = {{Driben, Rodislav and Dror, Nir and Malomed, Boris A. and Meier, Torsten}},
  issn         = {{1367-2630}},
  journal      = {{New Journal of Physics}},
  title        = {{{Multipoles and vortex multiplets in multidimensional media with inhomogeneous defocusing nonlinearity}}},
  doi          = {{10.1088/1367-2630/17/8/083043}},
  volume       = {{17}},
  year         = {{2015}},
}

@inproceedings{13927,
  author       = {{Lange, C. and Schubert, O. and Hohenleutner, M. and Langer, F. and Baierl, S. and Maag, T. and Urbanek, B. and Edwards, E. R. J. and Woltersdorf, G. and Bougeard, D. and Huttner, U. and Golde, D. and Meier, Torsten and Kira, M. and Koch, S. W. and Huber, R.}},
  booktitle    = {{Nonlinear Frequency Generation and Conversion: Materials, Devices, and Applications XIV}},
  editor       = {{Vodopyanov, Konstantin L.}},
  publisher    = {{SPIE}},
  title        = {{{Sub-cycle control of multi-THz high-harmonic generation and all-coherent charge transport in bulk semiconductors}}},
  doi          = {{10.1117/12.2085101}},
  volume       = {{9347}},
  year         = {{2015}},
}

@inproceedings{13933,
  author       = {{Lange, C. and Schubert, O. and Hohenleutner, M. and Langer, F. and Baierl, S. and Maag, T. and Urbanek, B. and Edwards, E. R. J. and Woltersdorf, G. and Bougeard, D. and Huttner, U. and Golde, D. and Meier, Torsten and Kira, M. and Koch, S. W. and Huber, R.}},
  booktitle    = {{Nonlinear Frequency Generation and Conversion: Materials, Devices, and Applications XIV}},
  editor       = {{Vodopyanov, Konstantin L.}},
  publisher    = {{SPIE}},
  title        = {{{Sub-cycle control of multi-THz high-harmonic generation and all-coherent charge transport in bulk semiconductors}}},
  doi          = {{10.1117/12.2085101}},
  volume       = {{9347}},
  year         = {{2015}},
}

@inproceedings{22949,
  author       = {{Lange, C. and Schubert, O. and Hohenleutner, M. and Langer, F. and Baierl, S. and Maag, T. and Urbanek, B. and Edwards, E. R. J. and Woltersdorf, G. and Bougeard, D. and Huttner, U. and Golde, D. and Meier, Torsten and Kira, M. and Koch, S. W. and Huber, R.}},
  booktitle    = {{Nonlinear Frequency Generation and Conversion: Materials, Devices, and Applications XIV}},
  editor       = {{Vodopyanov, Konstantin L.}},
  publisher    = {{SPIE}},
  title        = {{{Sub-cycle control of multi-THz high-harmonic generation and all-coherent charge transport in bulk semiconductors}}},
  doi          = {{10.1117/12.2085101}},
  volume       = {{9347}},
  year         = {{2015}},
}

@inbook{44736,
  author       = {{Herzig, Bardo and Martin, A. and Schaper, N. and Ossenschmidt, D.}},
  booktitle    = {{Kompetenzerwerb an Hochschulen: Modellierung und Messung. Zur Professionalisierung angehender Lehrerinnen und Lehrer sowie frühpädagogischer Fachkräfte. }},
  editor       = {{Koch-Priewe, Barbara and Köker, Anne and Seifried, Jürgen and Wuttke, Evelin}},
  pages        = {{153--176}},
  publisher    = {{Verlag Julius Klinkhardt}},
  title        = {{{Modellierung und Messung medienpädagogischer Kompetenz - Grundlagen und erste Ergebnisse}}},
  year         = {{2015}},
}

@article{44980,
  author       = {{Cooper, M. and Wagner, A. and Wondrousch, D. and Sonntag, F. and Sonnabend, A. and Brehm, Martin and Schüürmann, G. and Adrian, L.}},
  journal      = {{Environ. Sci. Technol.}},
  pages        = {{6018--6028}},
  title        = {{{Anaerobic Microbial Transformation of Halogenated Aromatics and Fate Prediction Using Electron Density Modeling}}},
  doi          = {{10.1021/acs.est.5b00303}},
  volume       = {{49 (10)}},
  year         = {{2015}},
}

@article{34310,
  author       = {{Elgabarty, Hossam and Khaliullin, Rustam Z. and Kühne, Thomas D.}},
  issn         = {{2041-1723}},
  journal      = {{Nature Communications}},
  keywords     = {{General Physics and Astronomy, General Biochemistry, Genetics and Molecular Biology, General Chemistry}},
  number       = {{1}},
  publisher    = {{Springer Science and Business Media LLC}},
  title        = {{{Covalency of hydrogen bonds in liquid water can be probed by proton nuclear magnetic resonance experiments}}},
  doi          = {{10.1038/ncomms9318}},
  volume       = {{6}},
  year         = {{2015}},
}

@inbook{46947,
  author       = {{Klingsieck, Katrin B. and Steel, Piers}},
  booktitle    = {{International Encyclopedia of Social & Behavioral Science}},
  editor       = {{Wright, J. D.}},
  pages        = {{73--78}},
  publisher    = {{Elsevier}},
  title        = {{{Procrastination}}},
  year         = {{2015}},
}

@inbook{44649,
  author       = {{Köster, Carolin and Schaper, Niclas and Fergland, Dennis and Bischof, Sandra and Kussin, Ulrich and Kämpfe, Astrid}},
  booktitle    = {{Bewegungsorientierte Gesundheitsförderung an Hochschulen}},
  editor       = {{Göring, A. and Möllenbeck, D.}},
  pages        = {{427--436}},
  publisher    = {{Univ.-Verl. Göttingen}},
  title        = {{{"Hol dir deinen beneFIT" : Einführung eines Gesundheitspasses zur Förderung der Studierendengesundheit an der Universität Paderborn}}},
  year         = {{2015}},
}

@inbook{44648,
  author       = {{Kämpfe, Astrid and Köster, Carolin and Brandl-Bredenbeck, Hans-Pater}},
  booktitle    = {{Bewegungsorientierte Gesundheitsförderung an Hochschulen}},
  editor       = {{Göring, A. and Möllenbeck, D.}},
  pages        = {{257--272}},
  title        = {{{Körperlich-sportliche Aktivität und subjektiver Gesundheitszustand sowie studiumsspezifisches Stressempfinden bei Studierenden}}},
  year         = {{2015}},
}

@inproceedings{1773,
  author       = {{Schumacher, Jörn and T. Anderson, J. and Borga, A. and Boterenbrood, H. and Chen, H. and Chen, K. and Drake, G. and Francis, D. and Gorini, B. and Lanni, F. and Lehmann-Miotto, Giovanna and Levinson, L. and Narevicius, J. and Plessl, Christian and Roich, A. and Ryu, S. and P. Schreuder, F. and Vandelli, Wainer and Vermeulen, J. and Zhang, J.}},
  booktitle    = {{Proc. Int. Conf. on Distributed Event-Based Systems (DEBS)}},
  publisher    = {{ACM}},
  title        = {{{Improving Packet Processing Performance in the ATLAS FELIX Project – Analysis and Optimization of a Memory-Bounded Algorithm}}},
  doi          = {{10.1145/2675743.2771824}},
  year         = {{2015}},
}

@article{1775,
  abstract     = {{The ATLAS experiment at CERN is planning full deployment of a new unified optical link technology for connecting detector front end electronics on the timescale of the LHC Run 4 (2025). It is estimated that roughly 8000 GBT (GigaBit Transceiver) links, with transfer rates up to 10.24 Gbps, will replace existing links used for readout, detector control and distribution of timing and trigger information. A new class of devices will be needed to interface many GBT links to the rest of the trigger, data-acquisition and detector control systems. In this paper FELIX (Front End LInk eXchange) is presented, a PC-based device to route data from and to multiple GBT links via a high-performance general purpose network capable of a total throughput up to O(20 Tbps). FELIX implies architectural changes to the ATLAS data acquisition system, such as the use of industry standard COTS components early in the DAQ chain. Additionally the design and implementation of a FELIX demonstration platform is presented and hardware and software aspects will be discussed.}},
  author       = {{Anderson, J and Borga, A and Boterenbrood, H and Chen, H and Chen, K and Drake, G and Francis, D and Gorini, B and Lanni, F and Lehmann Miotto, G and Levinson, L and Narevicius, J and Plessl, Christian and Roich, A and Ryu, S and Schreuder, F and Schumacher, Jörn and Vandelli, Wainer and Vermeulen, J and Zhang, J}},
  journal      = {{Journal of Physics: Conference Series}},
  publisher    = {{IOP Publishing}},
  title        = {{{FELIX: a High-Throughput Network Approach for Interfacing to Front End Electronics for ATLAS Upgrades}}},
  doi          = {{10.1088/1742-6596/664/8/082050}},
  volume       = {{664}},
  year         = {{2015}},
}

