@article{26045,
  author       = {{Aasi, J. and Abadie, J. and Abbott, B. P. and Abbott, R. and Abbott, T. D. and Abernathy, M. R. and Adams, C. and Adams, T. and Addesso, P. and Adhikari, R. X. and Affeldt, C. and Aguiar, O. D. and Ajith, P. and Allen, B. and Amador Ceron, E. and Amariutei, D. and Anderson, S. B. and Anderson, W. G. and Arai, K. and Araya, M. C. and Arceneaux, C. and Ast, S. and Aston, S. M. and Atkinson, D. and Aufmuth, P. and Aulbert, C. and Austin, L. and Aylott, B. E. and Babak, S. and Baker, P. T. and Ballmer, S. and Bao, Y. and Barayoga, J. C. and Barker, D. and Barr, B. and Barsotti, L. and Barton, M. A. and Bartos, I. and Bassiri, R. and Batch, J. and Bauchrowitz, J. and Behnke, B. and Bell, A. S. and Bell, C. and Bergmann, G. and Berliner, J. M. and Bertolini, A. and Betzwieser, J. and Beveridge, N. and Beyersdorf, P. T. and Bhadbhade, T. and Bilenko, I. A. and Billingsley, G. and Birch, J. and Biscans, S. and Black, E. and Blackburn, J. K. and Blackburn, L. and Blair, D. and Bland, B. and Bock, O. and Bodiya, T. P. and Bogan, C. and Bond, C. and Bork, R. and Born, M. and Bose, S. and Bowers, J. and Brady, P. R. and Braginsky, V. B. and Brau, J. E. and Breyer, J. and Bridges, D. O. and Brinkmann, M. and Britzger, M. and Brooks, A. F. and Brown, D. A. and Brown, D. D. and Buckland, K. and Brückner, F. and Buchler, B. C. and Buonanno, A. and Burguet-Castell, J. and Byer, R. L. and Cadonati, L. and Camp, J. B. and Campsie, P. and Cannon, K. and Cao, J. and Capano, C. D. and Carbone, L. and Caride, S. and Castiglia, A. D. and Caudill, S. and Cavaglià, M. and Cepeda, C. and Chalermsongsak, T. and Chao, S. and Charlton, P. and Chen, X. and Chen, Y. and Cho, H-S. and Chow, J. H. and Christensen, N. and Chu, Q. and Chua, S. S. Y and Chung, C. T. Y. and Ciani, G. and Clara, F. and Clark, D. E. and Clark, J. A. and Constancio Junior, M. and Cook, D. and Corbitt, T. R. and Cordier, M. and Cornish, N. and Corsi, A. and Costa, C. A. and Coughlin, M. W. and Countryman, S. and Couvares, P. and Coward, D. M. and Cowart, M. and Coyne, D. C. and Craig, K. and Creighton, J. D. E. and Creighton, T. D. and Cumming, A. and Cunningham, L. and Dahl, K. and Damjanic, M. and Danilishin, S. L. and Danzmann, K. and Daudert, B. and Daveloza, H. and Davies, G. S. and Daw, E. J. and Dayanga, T. and Deleeuw, E. and Denker, T. and Dent, T. and Dergachev, V. and DeRosa, R. and DeSalvo, R. and Dhurandhar, S. and Di Palma, I. and Díaz, M. and Dietz, A. and Donovan, F. and Dooley, K. L. and Doravari, S. and Drasco, S. and Drever, R. W. P. and Driggers, J. C. and Du, Z. and Dumas, J-C. and Dwyer, S. and Eberle, T. and Edwards, M. and Effler, A. and Ehrens, P. and Eikenberry, S. S. and Engel, R. and Essick, R. and Etzel, T. and Evans, K. and Evans, M. and Evans, T. and Factourovich, M. and Fairhurst, S. and Fang, Q. and Farr, B. F. and Farr, W. and Favata, M. and Fazi, D. and Fehrmann, H. and Feldbaum, D. and Finn, L. S. and Fisher, R. P. and Foley, S. and Forsi, E. and Fotopoulos, N. and Frede, M. and Frei, M. A. and Frei, Z. and Freise, A. and Frey, R. and Fricke, T. T. and Friedrich, D. and Fritschel, P. and Frolov, V. V. and Fujimoto, M-K. and Fulda, P. J. and Fyffe, M. and Gair, J. and Garcia, J. and Gehrels, N. and Gelencser, G. and Gergely, L. Á. and Ghosh, S. and Giaime, J. A. and Giampanis, S. and Giardina, K. D. and Gil-Casanova, S. and Gill, C. and Gleason, J. and Goetz, E. and González, G. and Gordon, N. and Gorodetsky, M. L. and Gossan, S. and Goßler, S. and Graef, C. and Graff, P. B. and Grant, A. and Gras, S. and Gray, C. and Greenhalgh, R. J. S. and Gretarsson, A. M. and Griffo, C. and Grote, H. and Grover, K. and Grunewald, S. and Guido, C. and Gustafson, E. K. and Gustafson, R. and Hammer, D. and Hammond, G. and Hanks, J. and Hanna, C. and Hanson, J. and Haris, K. and Harms, J. and Harry, G. M. and Harry, I. W. and Harstad, E. D. and Hartman, M. T. and Haughian, K. and Hayama, K. and Heefner, J. and Heintze, M. C. and Hendry, M. A. and Heng, I. S. and Heptonstall, A. W. and Heurs, M. and Hewitson, M. and Hild, S. and Hoak, D. and Hodge, K. A. and Holt, K. and Holtrop, M. and Hong, T. and Hooper, S. and Hough, J. and Howell, E. J. and Huang, V. and Huerta, E. A. and Hughey, B. and Huttner, S. H. and Huynh, M. and Huynh-Dinh, T. and Ingram, D. R. and Inta, R. and Isogai, T. and Ivanov, A. and Iyer, B. R. and Izumi, K. and Jacobson, M. and James, E. and Jang, H. and Jang, Y. J. and Jesse, E. and Johnson, W. W. and Jones, D. and Jones, D. I. and Jones, R. and Ju, L. and Kalmus, P. and Kalogera, V. and Kandhasamy, S. and Kang, G. and Kanner, J. B. and Kasturi, R. and Katsavounidis, E. and Katzman, W. and Kaufer, H. and Kawabe, K. and Kawamura, S. and Kawazoe, F. and Keitel, D. and Kelley, D. B. and Kells, W. and Keppel, D. G. and Khalaidovski, A. and Khalili, F. Y. and Khazanov, E. A. and Kim, B. K. and Kim, C. and Kim, K. and Kim, N. and Kim, Y-M. and King, P. J. and Kinzel, D. L. and Kissel, J. S. and Klimenko, S. and Kline, J. and Kokeyama, K. and Kondrashov, V. and Koranda, S. and Korth, W. Z. and Kozak, D. and Kozameh, C. and Kremin, A. and Kringel, V. and Krishnan, B. and Kucharczyk, C. and Kuehn, G. and Kumar, P. and Kumar, R. and Kuper, B. J. and Kurdyumov, R. and Kwee, P. and Lam, P. K. and Landry, M. and Lantz, B. and Lasky, P. D. and Lawrie, C. and Lazzarini, A. and Le Roux, A. and Leaci, P. and Lee, C-H. and Lee, H. K. and Lee, H. M. and Lee, J. and Leong, J. R. and Levine, B. and Lhuillier, V. and Lin, A. C. and Litvine, V. and Liu, Y. and Liu, Z. and Lockerbie, N. A. and Lodhia, D. and Loew, K. and Logue, J. and Lombardi, A. L. and Lormand, M. and Lough, J. and Lubinski, M. and Lück, H. and Lundgren, A. P. and Macarthur, J. and Macdonald, E. and Machenschalk, B. and MacInnis, M. and Macleod, D. M. and Magaña-Sandoval, F. and Mageswaran, M. and Mailand, K. and Manca, G. and Mandel, I. and Mandic, V. and Márka, S. and Márka, Z. and Markosyan, A. S. and Maros, E. and Martin, I. W. and Martin, R. M. and Martinov, D. and Marx, J. N. and Mason, K. and Matichard, F. and Matone, L. and Matzner, R. A. and Mavalvala, N. and May, G. and Mazzolo, G. and McAuley, K. and McCarthy, R. and McClelland, D. E. and McGuire, S. C. and McIntyre, G. and McIver, J. and Meadors, G. D. and Mehmet, M. and Meier, T. and Melatos, A. and Mendell, G. and Mercer, R. A. and Meshkov, S. and Messenger, C. and Meyer, M. S. and Miao, H. and Miller, J. and Mingarelli, C. M. F. and Mitra, S. and Mitrofanov, V. P. and Mitselmakher, G. and Mittleman, R. and Moe, B. and Mokler, F. and Mohapatra, S. R. P. and Moraru, D. and Moreno, G. and Mori, T. and Morriss, S. R. and Mossavi, K. and Mow-Lowry, C. M. and Mueller, C. L. and Mueller, G. and Mukherjee, S. and Mullavey, A. and Munch, J. and Murphy, D. and Murray, P. G. and Mytidis, A. and Nanda Kumar, D. and Nash, T. and Nayak, R. and Necula, V. and Newton, G. and Nguyen, T. and Nishida, E. and Nishizawa, A. and Nitz, A. and Nolting, D. and Normandin, M. E. and Nuttall, L. K. and O'Dell, J. and O'Reilly, B. and O'Shaughnessy, R. and Ochsner, E. and Oelker, E. and Ogin, G. H. and Oh, J. J. and Oh, S. H. and Ohme, F. and Oppermann, P. and Osthelder, C. and Ott, C. D. and Ottaway, D. J. and Ottens, R. S. and Ou, J. and Overmier, H. and Owen, B. J. and Padilla, C. and Pai, A. and Pan, Y. and Pankow, C. and Papa, M. A. and Paris, H. and Parkinson, W. and Pedraza, M. and Penn, S. and Peralta, C. and Perreca, A. and Phelps, M. and Pickenpack, M. and Pierro, V. and Pinto, I. M. and Pitkin, M. and Pletsch, H. J. and Pöld, J. and Postiglione, F. and Poux, C. and Predoi, V. and Prestegard, T. and Price, L. R. and Prijatelj, M. and Privitera, S. and Prokhorov, L. G. and Puncken, O. and Quetschke, V. and Quintero, E. and Quitzow-James, R. and Raab, F. J. and Radkins, H. and Raffai, P. and Raja, S. and Rakhmanov, M. and Ramet, C. and Raymond, V. and Reed, C. M. and Reed, T. and Reid, S. and Reitze, D. H. and Riesen, R. and Riles, K. and Roberts, M. and Robertson, N. A. and Robinson, E. L. and Roddy, S. and Rodriguez, C. and Rodriguez, L. and Rodruck, M. and Rollins, J. G. and Romie, J. H. and Röver, C. and Rowan, S. and Rüdiger, A. and Ryan, K. and Salemi, F. and Sammut, L. and Sandberg, V. and Sanders, J. and Sankar, S. and Sannibale, V. and Santamaría, L. and Santiago-Prieto, I. and Santostasi, G. and Sathyaprakash, B. S. and Saulson, P. R. and Savage, R. L. and Schilling, R. and Schnabel, R. and Schofield, R. M. S. and Schuette, D. and Schulz, B. and Schutz, B. F. and Schwinberg, P. and Scott, J. and Scott, S. M. and Seifert, F. and Sellers, D. and Sengupta, A. S. and Sergeev, A. and Shaddock, D. A. and Shahriar, M. S. and Shaltev, M. and Shao, Z. and Shapiro, B. and Shawhan, P. and Shoemaker, D. H. and Sidery, T. L. and Siemens, X. and Sigg, D. and Simakov, D. and Singer, A. and Singer, L. and Sintes, A. M. and Skelton, G. R. and Slagmolen, B. J. J and Slutsky, J. and Smith, J. R. and Smith, M. R. and Smith, R. J. E. and Smith-Lefebvre, N. D. and Son, E. J. and Sorazu, B. and Souradeep, T. and Stefszky, Michael and Steinert, E. and Steinlechner, J. and Steinlechner, S. and Steplewski, S. and Stevens, D. and Stochino, A. and Stone, R. and Strain, K. A. and Strigin, S. E. and Stroeer, A. S. and Stuver, A. L. and Summerscales, T. Z. and Susmithan, S. and Sutton, P. J. and Szeifert, G. and Talukder, D. and Tanner, D. B. and Tarabrin, S. P. and Taylor, R. and Thomas, M. and Thomas, P. and Thorne, K. A. and Thorne, K. S. and Thrane, E. and Tiwari, V. and Tokmakov, K. V. and Tomlinson, C. and Torres, C. V. and Torrie, C. I. and Traylor, G. and Tse, M. and Ugolini, D. and Unnikrishnan, C. S. and Vahlbruch, H. and Vallisneri, M. and van der Sluys, M. V. and van Veggel, A. A. and Vass, S. and Vaulin, R. and Vecchio, A. and Veitch, P. J. and Veitch, J. and Venkateswara, K. and Verma, S. and Vincent-Finley, R. and Vitale, S. and Vo, T. and Vorvick, C. and Vousden, W. D. and Vyatchanin, S. P. and Wade, A. and Wade, L. and Wade, M. and Waldman, S. J. and Wallace, L. and Wan, Y. and Wang, M. and Wang, J. and Wang, X. and Wanner, A. and Ward, R. L. and Was, M. and Weinert, M. and Weinstein, A. J. and Weiss, R. and Welborn, T. and Wen, L. and Wessels, P. and West, M. and Westphal, T. and Wette, K. and Whelan, J. T. and Whitcomb, S. E. and Wiseman, A. G. and White, D. J. and Whiting, B. F. and Wiesner, K. and Wilkinson, C. and Willems, P. A. and Williams, L. and Williams, R. and Williams, T. and Willis, J. L. and Willke, B. and Wimmer, M. and Winkelmann, L. and Winkler, W. and C. Wipf, C. and Wittel, H. and Woan, G. and Wooley, R. and Worden, J. and Yablon, J. and Yakushin, I. and Yamamoto, H. and Yancey, C. C. and Yang, H. and Yeaton-Massey, D. and Yoshida, S. and Yum, H. and Zanolin, M. and Zhang, F. and Zhang, L. and Zhao, C. and Zhu, H. and Zhu, X. J. and Zotov, N. and Zucker, M. E. and Zweizig, J.}},
  issn         = {{1749-4885}},
  journal      = {{Nature Photonics}},
  pages        = {{613--619}},
  title        = {{{Enhanced sensitivity of the LIGO gravitational wave detector by using squeezed states of light}}},
  doi          = {{10.1038/nphoton.2013.177}},
  year         = {{2013}},
}

@article{26348,
  author       = {{Pagel, D. and Fehske, H. and Sperling, Jan and Vogel, W.}},
  issn         = {{1050-2947}},
  journal      = {{Physical Review A}},
  title        = {{{Multipartite entangled light from driven microcavities}}},
  doi          = {{10.1103/physreva.88.042310}},
  year         = {{2013}},
}

@article{27043,
  abstract     = {{<jats:p>Dietary fat intake in childhood may influence the risk for developing chronic diseases. The objective of the present study was to examine secular trends in the parameters of fat intake between 2000 and 2010 in a sample of German children and adolescents (<jats:italic>n</jats:italic> 808) participating in the Dortmund Nutritional and Anthropometric Longitudinally Designed (DONALD) Study. Dietary data from 4380 3 d weighed dietary records were analysed using repeated-measures regression to determine time trends in fat quantity, i.e. the intake of total fat, and in fat quality, i.e. the ratios of SFA, MUFA and PUFA. In young children (2–3 years) and in adolescents (13–18 years), total fat intake remained stable over time, but decreased by 0·08 % of total energy (%E) per year in 4–12-year-old children. In 2010, median fat intake was at the upper end of the recommendations. SFA intake decreased slightly in 2–3- and 4–12-year-old children by 0·09 and 0·05 %E per year, respectively. MUFA and PUFA intakes remained stable in all the age groups except in adolescents. Here, PUFA intake decreased initially, but increased between 2005 and 2010. In 2010, only between 3 and 18 % of the respective age groups had an intake of SFA or PUFA within the recommendations. In conclusion, fat quantity and quality did not change substantially between 2000 and 2010. Fat quality, in particular, needs to be improved, since a large percentage of our sample did not meet the recommended intakes for SFA and PUFA.</jats:p>}},
  author       = {{Libuda, Lars and Alexy, Ute and Kersting, Mathilde}},
  issn         = {{0007-1145}},
  journal      = {{British Journal of Nutrition}},
  pages        = {{141--150}},
  title        = {{{Time trends in dietary fat intake in a sample of German children and adolescents between 2000 and 2010: not quantity, but quality is the issue}}},
  doi          = {{10.1017/s0007114513002031}},
  year         = {{2013}},
}

@article{20946,
  abstract     = {{In the current work, we study the silver ion release potential and the water uptake through a SiOxCyHz-polymer which is grown from the precursor hexamethyldisiloxane (HMDSO) in radiofrequency (RF) plasma. These layers were deposited on top of two dimensional (2D) ensembles of silver nanoparticles (AgNPs) with nominal thickness of 2 nm on a 20 nm RF-sputtered polytetrafluoroethylene (PTFE) thin film. The composition of the plasma-polymerized HMDSO barriers was varied by changing the oxygen flow during the polymerization process and their thickness was varied as well. Morphology and optical properties of the nanocomposites were investigated using transmission electron microscopy (TEM) and UV-Visible spectroscopy (UV-Vis), respectively. The concentration of the silver ions released from the nanocomposites after immersion in water for several time intervals was measured using inductively coupled plasma mass spectrometry (ICP-MS). Contact angle analysis and electrochemical impedance spectroscopy (EIS) measurements were also performed and results show a strong dependence of the coatings properties and their water uptake on the oxygen content in the coating films and their thickness. Plasma polymerization with increasing the oxygen flow leads to the formation of more hydrophilic thin films with a higher Ag ion release potential. Increasing the thickness of the coatings reduced the amount of the released ions and the rate of the release process was slowed down. This indicates that by tailoring the structure and the thickness of the plasma-polymerized coating films, one can tune the silver ion release properties of Ag/polymer nanocomposites.}},
  author       = {{Alissawi, N. and Peter, T. and Strunskus, T. and Ebbert, Christoph and Grundmeier, Guido and Faupel, F.}},
  issn         = {{1572-896X}},
  journal      = {{JOURNAL OF NANOPARTICLE RESEARCH}},
  number       = {{11}},
  title        = {{{Plasma-polymerized HMDSO coatings to adjust the silver ion release properties of Ag/polymer nanocomposites}}},
  doi          = {{10.1007/s11051-013-2080-9}},
  volume       = {{15}},
  year         = {{2013}},
}

@inproceedings{17439,
  abstract     = {{Viele virtuelle 3-D-Szenen im industriellen Bereich sind nicht gleichmäßig strukturiert, z.B. weil sie eine stark unterschiedliche Dichteverteilung der Polygone aufweisen. Für solch heterogene Daten existiert kein Algorithmus, der die Gesamtheit der Daten sowohl schnell als auch mit guter Qualität darstellen kann. Die Auswahl der richtigen Algorithmen für einzelne Szenenteile durch einen Experten ist zeitintensiv und in vielen Visualisierungssystemen nicht umzusetzen. Um dieses Problem zu lösen, setzt das hier vorgestellte Multi-Algorithmen-Rendering verschiedene Renderingalgorithmen gleichzeitig ein, um eine virtuelle 3-D-Szene darzustellen. Das Verfahren unterteilt die Szene dafür in einem Vorverarbeitungsschritt automatisch in geeignete Teilregionen und bestimmt deren Eigenschaften. Diese Daten werden zur Laufzeit dazu genutzt, um ständig für den aktuellen Standpunkt des Betrachters eine Abschätzung der Qualität und Laufzeit der zur Auswahl stehenden Renderingalgorithmen zu berechnen. Durch die Lösung eines Optimierungsproblems kann so bei vorgegebener Bildrate durch die passende Zuordnung der Algorithmen zu den Regionen die Bildqualität optimiert werden – bei automatischer Anpassung an die Leistungsfähigkeit der eingesetzten Hardware. In einer experimentellen Evaluierung vergleichen wir die Laufzeit und Bildqualität des Verfahrens mit denen verbreiteter Standardrenderingverfahren.}},
  author       = {{Petring, Ralf and Eikel, Benjamin and Jähn, Claudius and Fischer, Matthias and Meyer auf der Heide, Friedhelm}},
  booktitle    = {{11. Paderborner Workshop Augmented & Virtual Reality in der Produktentstehung}},
  pages        = {{49----60}},
  title        = {{{Darstellung heterogener 3-D-Szenen in Echtzeit}}},
  volume       = {{311}},
  year         = {{2013}},
}

@phdthesis{17440,
  author       = {{Eikel, Benjamin}},
  title        = {{{Spherical visibility sampling : preprocessed visibility for occlusion culling in complex 3D scenes}}},
  year         = {{2013}},
}

@article{17663,
  abstract     = {{In this paper, we define and study a new problem, referred to as the Dependent Unsplittable Flow Problem (D-UFP). We present and discuss this problem in the context of large-scale powerful (radar/camera) sensor networks, but we believe it has important applications on the admission of large flows in other networks as well. In order to optimize the selection of flows transmitted to the gateway, D-UFP takes into account possible dependencies between flows. We show that D-UFP is more difficult than NP-hard problems for which no good approximation is known. Then, we address two special cases of this problem: the case where all the sensors have a shared channel and the case where the sensors form a mesh and route to the gateway over a spanning tree.}},
  author       = {{Cohen, R. and Nudelman, I. and Polevoy, Gleb}},
  issn         = {{1063-6692}},
  journal      = {{Networking, IEEE/ACM Transactions on}},
  keywords     = {{Approximation algorithms, Approximation methods, Bandwidth, Logic gates, Radar, Vectors, Wireless sensor networks, Dependent flow scheduling, sensor networks}},
  number       = {{5}},
  pages        = {{1461--1471}},
  title        = {{{On the Admission of Dependent Flows in Powerful Sensor Networks}}},
  doi          = {{10.1109/TNET.2012.2227792}},
  volume       = {{21}},
  year         = {{2013}},
}

@article{23643,
  author       = {{Will, J. and Gröschel, A. and Kot, D. and Schubert, M. A. and Bergmann, C. and Steinrück, Hans-Georg and Kissinger, G. and Magerl, A.}},
  issn         = {{0021-8979}},
  journal      = {{Journal of Applied Physics}},
  pages        = {{073508}},
  title        = {{{Oxygen diffusivity in silicon derived from dynamical X-ray diffraction}}},
  doi          = {{10.1063/1.4792747}},
  volume       = {{7}},
  year         = {{2013}},
}

@inbook{18084,
  author       = {{Ganguin, S. and Meister, Dorothee M.}},
  booktitle    = {{Kinder-Eltern-Medien. Medienpädagogische Anregungen für den Erziehungsalltag}},
  editor       = {{Kamin, A.-M. and Meister, Dorothee M. and Schulte, D.}},
  pages        = {{151 -- 165}},
  publisher    = {{Wilhelm Fink Verlag}},
  title        = {{{Spiele als Lernköder? Über das Potenzial von Computerspielen}}},
  year         = {{2013}},
}

@inbook{18086,
  author       = {{Kamin, A.-M. and Meister, Dorothee M. and Schulte, D.}},
  booktitle    = {{Kinder- Eltern-Medien}},
  pages        = {{7 -- 13}},
  publisher    = {{Wilhelm Fink Verlag}},
  title        = {{{Medienpädagogische Anregungen für den Erziehungsalltag – Einführende Gedanken}}},
  year         = {{2013}},
}

@book{22379,
  author       = {{Hölscher, Christian and Michaelis, Stefanie and Strop, Malte and Zimmer, Detmar}},
  isbn         = {{978-3-942647-29-8}},
  pages        = {{345--357}},
  publisher    = {{Nixdorf Institut (HNI)}},
  title        = {{{Energetische Optimierung eines Mehrmotorenantriebssystems für Kautschukinnenmischer}}},
  year         = {{2013}},
}

@proceedings{7762,
  editor       = {{Fazal-Baqaie, Masud}},
  publisher    = {{GI, Köllen Druck+Verlag GmbH, Bonn}},
  title        = {{{Vorgehensmodelle 2013: Vorgehensmodelle - Anspruch und Wirklichkeit - Proceedings der 20. Tagung der Fachgruppe Vorgehensmodelle im Fachgebiet Wirtschaftsinformatik (WI-VM) der Gesellschaft für Informatik e.V., Lörrach (Germany)}}},
  volume       = {{P-224}},
  year         = {{2013}},
}

@inproceedings{5752,
  author       = {{Yigitbas, Enes and Gerth, Christian and Sauer, Stefan}},
  booktitle    = {{Informatik 2013, 43. Jahrestagung der Gesellschaft für Informatik e.V. (GI), Informatik angepasst an Mensch, Organisation und Umwelt, 16.-20. September 2013, Koblenz, Deutschland}},
  pages        = {{2714--2723}},
  title        = {{{Konzeption modellbasierter Benutzungsschnittstellen für verteilte Selbstbedienungssysteme}}},
  year         = {{2013}},
}

@article{7236,
  author       = {{Lo, Fang-Yuh and Guo, Jhong-Yu and Huang, Cheng-De and Chou, Kai-Chieh and Liu, Hsiang-Lin and Ney, Verena and Ney, Andreas and Chern, Ming-Yau and Shvarkov, Stepan and Reuter, Dirk and Wieck, Andreas D. and Pezzagna, Sébastien and Massies, Jean}},
  issn         = {{1567-1739}},
  journal      = {{Current Applied Physics}},
  pages        = {{S7--S11}},
  publisher    = {{Elsevier BV}},
  title        = {{{Evidences of defect contribution in magnetically ordered Sm-implanted GaN}}},
  doi          = {{10.1016/j.cap.2013.11.051}},
  volume       = {{14}},
  year         = {{2013}},
}

@article{7239,
  author       = {{Steinhoff, A. and Kurtze, H. and Gartner, P. and Florian, M. and Reuter, Dirk and Wieck, A. D. and Bayer, M. and Jahnke, F.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{20}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Combined influence of Coulomb interaction and polarons on the carrier dynamics in InGaAs quantum dots}}},
  doi          = {{10.1103/physrevb.88.205309}},
  volume       = {{88}},
  year         = {{2013}},
}

@article{7240,
  author       = {{Henn, T. and Kiessling, T. and Ossau, W. and Molenkamp, L. W. and Reuter, Dirk and Wieck, A. D.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{19}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Picosecond real-space imaging of electron spin diffusion in GaAs}}},
  doi          = {{10.1103/physrevb.88.195202}},
  volume       = {{88}},
  year         = {{2013}},
}

@article{7258,
  author       = {{Henn, T. and Heckel, A. and Beck, M. and Kiessling, T. and Ossau, W. and Molenkamp, L. W. and Reuter, Dirk and Wieck, A. D.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{8}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Hot carrier effects on the magneto-optical detection of electron spins in GaAs}}},
  doi          = {{10.1103/physrevb.88.085303}},
  volume       = {{88}},
  year         = {{2013}},
}

@article{7259,
  author       = {{Buß, J. H. and Rudolph, J. and Shvarkov, S. and Semond, F. and Reuter, Dirk and Wieck, A. D. and Hägele, D.}},
  issn         = {{0003-6951}},
  journal      = {{Applied Physics Letters}},
  number       = {{9}},
  publisher    = {{AIP Publishing}},
  title        = {{{Magneto-optical studies of Gd-implanted GaN: No spin alignment of conduction band electrons}}},
  doi          = {{10.1063/1.4819767}},
  volume       = {{103}},
  year         = {{2013}},
}

@article{7260,
  author       = {{Carrad, D J and Burke, A M and Reece, P J and Lyttleton, R W and Waddington, D E J and Rai, A and Reuter, Dirk and Wieck, A D and Micolich, A P}},
  issn         = {{0953-8984}},
  journal      = {{Journal of Physics: Condensed Matter}},
  number       = {{32}},
  publisher    = {{IOP Publishing}},
  title        = {{{The effect of (NH4)2Sxpassivation on the (311)A GaAs surface and its use in AlGaAs/GaAs heterostructure devices}}},
  doi          = {{10.1088/0953-8984/25/32/325304}},
  volume       = {{25}},
  year         = {{2013}},
}

@article{7261,
  author       = {{Höpfner, Henning and Fritsche, Carola and Ludwig, Arne and Ludwig, Astrid and Stromberg, Frank and Wende, Heiko and Keune, Werner and Reuter, Dirk and Wieck, Andreas D. and Gerhardt, Nils C. and Hofmann, Martin R.}},
  issn         = {{1862-6351}},
  journal      = {{physica status solidi (c)}},
  number       = {{9}},
  pages        = {{1214--1217}},
  publisher    = {{Wiley}},
  title        = {{{Spin relaxation length in quantum dot spin LEDs}}},
  doi          = {{10.1002/pssc.201200689}},
  volume       = {{10}},
  year         = {{2013}},
}

