Auflistung An-Institute nach Titel

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  • Desens, Michael; Wesang, Kristin; Rettschlag, Katharina; Wermbter, Karsten; Jäschke, Peter; Overmeyer, Ludger; Kaierle, Stefan (Amsterdam [u.a.] : Elsevier, 2022)
    There are several ways to create optical filters on glass, such as the low-cost sol-gel coating. However, to make this process even more effective and flexible, a laser instead of a conventional furnace process was used ...
  • Bredemeier, Dennis; Schinke, Carsten; Niepelt, Raphael; Brendel, Rolf (Chichester : Wiley, 2023)
    Photovoltaics (PVs) on building facades, either building-integrated or building-attached, offer a large energy yield potential especially in densely populated urban areas. Targeting this potential requires the availability ...
  • Walter, Jürgen; Hustedt, Michael; Stähr, Richard; Kaierle, Stefan; Jaeschke, Peter; Suttmann, Oliver; Overmeyer, Ludger (Amsterdam : Elsevier B.V., 2014)
    Carbon fiber reinforced plastics (CFRP) show high potential for use in lightweight applications not only in aircraft design, but also in the automotive or wind energy industry. However, processing of CFRP is complex and ...
  • Bluemel, S.; Bastick, S.; Staehr, R.; Jaeschke, P.; Suttmann, O.; Overmeyer, L. (Amsterdam : Elsevier B.V., 2016)
    For the development of a robot based laser cutting process of automotive 3D parts consisting of carbon fibre reinforced plastics (CFRP), investigations with a newly developed fibre guided nanosecond pulsed laser with an ...
  • Meyer, F.; Ostendorf, A.; Stute, U. (Bristol : IOP Publishing Ltd., 2007)
    This paper presents a flexible, mask-free and efficient technique for UV-laser micropatterning of photosensitive resist by laser direct writing (LDW). Photo resist spun on gold sputtered silicon wafers has been laser ...
  • Ovsianikov, Aleksandr; Deiwick, Andrea; Van Vlierberghe, Sandra; Pflaum, Michael; Wilhelmi, Mathias; Dubruel, Peter; Chichkov, Boris (Basel : MDPI AG, 2010)
    In the present work, the two-photon polymerization (2PP) technique was applied to develop precisely defined biodegradable 3D tissue engineering scaffolds. The scaffolds were fabricated via photopolymerization of gelatin ...
  • Gorlenko, M.V.; Chutko, E.A.; Churbanova, E.S.; Minaev, N.V.; Kachesov, K.I.; Lysak, L.V.; Evlashin, S.A.; Cheptsov, V.S.; Rybaltovskiy, A.O.; Yusupov, V.I.; Zhigarkov, V.S.; Davydova, G.A.; Chichkov, Boris; Bagratashvili, V.N. (London : BioMed Central Ltd., 2018)
    Standard microorganism isolating technology applied for complex multiphase environmental samples such as soil or sediment needs pre-treatment steps to remove living cells from their mixed-phase microniche, by creating a ...
  • Abel, Arvid; Wessarges, Yvonne; Julmi, Stefan; Hoff, Christian; Hermsdorf, Jörg; Klose, Christian; Maier, Hans Jürgen; Kaierle, Stefan; Overmeyer, Ludger (Amsterdam : Elsevier B.V., 2020)
    Growing demand for individual and especially complex parts with emphasis on biomedical or lightweight applications enhances the importance of laser powder bed fusion. Magnesium alloys offer both biocompatibility and low ...
  • Trad Nery, Marina; Venneberg, Jasper R.; Aggarwal, Nancy; Cole, Garrett D.; Corbitt, Thomas; Cripe, Jonathan; Lanza, Robert; Willke, Benno (Washington, DC : Soc., 2021)
    This Letter reports the experimental realization of a novel, to the best of our knowledge, active power stabilization scheme in which laser power fluctuations are sensed via the radiation pressure driven motion they induce ...
  • Walter, Jürgen; Brodesser, Alexander; Hustedt, Michael; Bluemel, Sven; Jaeschke, Peter; Kaierle, Stefan (Amsterdam : Elsevier B.V., 2016)
    Cutting and ablation using short-pulsed laser radiation are promising technologies to produce or repair CFRP components with outstanding mechanical properties e.g. for automotive and aircraft industry. Using sophisticated ...
  • Plat, K.; Witzendorff, P.V.; Suttmann, O.; Overmeyer, Ludger (Amsterdam : Elsevier B.V., 2014)
    High temperature applications of printed circuit boards (PCB) require materials with specifically adapted properties. Hence, conventional electrically isolating glass fiber and epoxy-resin materials have to be replaced by ...
  • Hagemann, R.; Noelke, C.; Kaierle, S.; Wesling, V. (Amsterdam : Elsevier B.V., 2012)
    Sintered alumina ceramics are used as refractory materials for industrial aluminum furnaces. In this environment the ceramic surface is in permanent contact with molten aluminum resulting in deposition of oxidic material ...
  • Koch, Lothar; Brandt, Ole; Deiwick, Andrea; Chichkov, Boris (Singapur : Whioce Publishing Pte Ltd, 2017)
    For more than a decade, living cells and biomaterials (typically hydrogels) are printed via laser-assisted bioprinting. Often, a thin metal layer is applied as laser-absorbing material called dynamic release layer (DRL). ...
  • Völkermeyer, Frank; Fischer, Fabian; Stute, Uwe; Kracht, Dietmar (Amsterdam : Elsevier B.V., 2011)
    This paper describes a laser-based approach for the bonded repair of fiber reinforced plastic (CFRP) parts. According to CFRP's material properties and sensitivity to thermal loads, short pulsed UV laser radiation is ...
  • Schimek, M.; Springer, A.; Kaierle, S.; Kracht, D.; Wesling, V. (Amsterdam : Elsevier B.V., 2012)
    By reducing vehicle weight, a significant increase in fuel efficiency and consequently a reduction in CO 2 emissions can be achieved. Currently a high interest in the production of hybrid weld seams between steel and ...
  • Terheiden, Barbara; Hensen, Jan; Wolf, Andreas; Horbelt, Renate; Plagwitz, Heiko; Brendel, Rolf (Basel : MDPI AG, 2010)
    We demonstrate for the first time the successful layer transfer of an epitaxially grown monocrystalline Si film from a purely chemically etched porous Si substrate of 150 mm diameter to a glass carrier. The surface ...
  • Gerhardt-Mörsdorf, Janis; Peterssen, Florian; Burfeind, Paula; Benecke, Mareike; Bensmann, Boris; Hanke-Rauschenbach, Richard; Minke, Christine (Weinheim : Wiley-VCH, 2024)
    This study performs a cradle-to-grave life cycle assessment of a 5 MW proton exchange membrane water electrolysis plant. The analysis follows a thorough engineering-based bottom-up design based on the electrochemical model ...
  • Voronkov, Vladimir V.; Falster, Robert; Batunina, A.V.; MacDonald, D.; Bothe, Karsten; Schmidt, J. (London : Elsevier Ltd., 2011)
    The recombination centre that emerges in boron- and oxygen-containing silicon was thought to be a complex of a substitutional boron atom Bs and an oxygen dimer O2. However in material co-doped with boron and phosphorus, ...
  • Voronkov, Vladimir V.; Falster, Robert; Bothe, Karsten; Lim, Bianca (London : Elsevier Ltd., 2013)
    Light-induced electron lifetime degradation in boron-doped Czochralski silicon was studied before and after a prolonged annealing at 350°C (up to 120 h) and 300°C (up to 8 weeks). Such a heat treatment is known to reduce ...
  • Abbott, B.; Abbott, R.; Adhikari, R.; Ageev, A.; Allen, B.; Amin, R.; Anderson, S.B.; Anderson, W.G.; Araya, M.; Armandula, H.; Ashley, M.; Asiri, F.; Aufmuth, P.; Aulbert, C.; Babak, S.; Balasubramanian, R.; Ballmer, S.; Barish, B.C.; Barker, C.; Barker, D.; Barnes, M.; Barr, B.; Barton, M.A.; Bayer, K.; Beausoleil, R.; Belczynski, K.; Bennett, R.; Berukoff, S.J.; Betzwieser, J.; Bhawal, B.; Bilenko, I.A.; Billingsley, G.; Black, E.; Blackburn, K.; Blackburn, L.; Bland, B.; Bochner, B.; Bogue, L.; Bork, R.; Bose, S.; Brady, P.R.; Braginsky, V.B.; Brau, J.E.; Brown, D.A.; Bullington, A.; Bunkowski, A.; Buonanno, A.; Burgess, R.; Busby, D.; Butler, W.E.; Byer, R.L.; Cadonati, L.; Cagnoli, G.; Camp, J.B.; Cantley, C.A.; Cardenas, L.; Carter, K.; Casey, M.M.; Castiglione, J.; Chandler, A.; Chapsky, J.; Charlton, P.; Chatterji, S.; Chelkowski, S.; Chen, Y.; Chickarmane, V.; Chin, D.; Christensen, N.; Churches, D.; Cokelaer, T.; Colacino, C.; Coldwell, R.; Coles, M.; Cook, D.; Corbitt, T.; Coyne, D.; Creighton, J.D.E.; Creighton, T.D.; Crooks, D.R.M.; Csatorday, P.; Cusack, B.J.; Cutler, C.; D’Ambrosio, E.; Danzmann, K.; Daw, E.; DeBra, D.; Delker, T.; Dergachev, V.; DeSalvo, R.; Dhurandhar, S.; Di Credico, A.; Díaz, M.; Ding, H.; Drever, R.W.P.; Dupuis, R.J.; Edlund, J.A.; Ehrens, P.; Elliffe, E.J.; Etzel, T.; Evans, M.; Evans, T.; Fairhurst, S.; Fallnich, C.; Farnham, D.; Fejer, M.M.; Findley, T.; Fine, M.; Finn, L.S.; Franzen, K.Y.; Freise, A.; Frey, R.; Fritschel, P.; Frolov, V.V.; Fyffe, M.; Ganezer, K.S.; Garofoli, J.; Giaime, J.A.; Gillespie, A.; Goda, K.; González, G.; Goßler, S.; Grandclément, P.; Grant, A.; Gray, C.; Gretarsson, A.M.; Grimmett, D.; Grote, H.; Grunewald, S.; Guenther, M.; Gustafson, E.; Gustafson, R.; Hamilton, W.O.; Hammond, M.; Hanson, J.; Hardham, C.; Harms, J.; Harry, G.; Hartunian, A.; Heefner, J.; Hefetz, Y.; Heinzel, G.; Heng, I.S.; Hennessy, M.; Hepler, N.; Heptonstall, A.; Heurs, Michèle; Hewitson, M.; Hild, S.; Hindman, N.; Hoang, P.; Hough, J.; Hrynevych, M.; Hua, W.; Ito, M.; Itoh, Y.; Ivanov, A.; Jennrich, O.; Johnson, B.; Johnson, W.W.; Johnston, W.R.; Jones, D.I.; Jones, L.; Jungwirth, D.; Kalogera, V.; Katsavounidis, E.; Kawabe, K.; Kawamura, S.; Kells, W.; Kern, J.; Khan, A.; Killbourn, S.; Killow, C.J.; Kim, C.; King, C.; King, P.; Klimenko, S.; Koranda, S.; Kötter, K.; Kovalik, J.; Kozak, D.; Krishnan, B.; Landry, M.; Langdale, J.; Lantz, B.; Lawrence, R.; Lazzarini, A.; Lei, M.; Leonor, I.; Libbrecht, K.; Libson, A.; Lindquist, P.; Liu, S.; Logan, J.; Lormand, M.; Lubinski, M.; Lück, H.; Lyons, T.T.; Machenschalk, B.; MacInnis, M.; Mageswaran, M.; Mailand, K.; Majid, W.; Malec, M.; Mann, F.; Marin, A.; Márka, S.; Maros, E.; Mason, J.; Mason, K.; Matherny, O.; Matone, L.; Mavalvala, N.; McCarthy, R.; McClelland, D.E.; McHugh, M.; McNabb, J.W.C.; Mendell, G.; Mercer, R.A.; Meshkov, S.; Messaritaki, E.; Messenger, C.; Mitrofanov, V.P.; Mitselmakher, G.; Mittleman, R.; Miyakawa, O.; Miyoki, S.; Mohanty, S.; Moreno, G.; Mossavi, K.; Mueller, G.; Mukherjee, S.; Murray, P.; Myers, J.; Nagano, S.; Nash, T.; Nayak, R.; Newton, G.; Nocera, F.; Noel, J.S.; Nutzman, P.; Olson, T.; O’Reilly, B.; Ottaway, D.J.; Ottewill, A.; Ouimette, D.; Overmier, H.; Owen, B.J.; Pan, Y.; Papa, M.A.; Parameshwaraiah, V.; Parameswariah, C.; Pedraza, M.; Penn, S.; Pitkin, M.; Plissi, M.; Prix, R.; Quetschke, V.; Raab, F.; Radkins, H.; Rahkola, R.; Rakhmanov, M.; Rao, S.R.; Rawlins, K.; Ray-Majumder, S.; Re, V.; Redding, D.; Regehr, M.W.; Regimbau, T.; Reid, S.; Reilly, K.T.; Reithmaier, K.; Reitze, D.H.; Richman, S.; Riesen, R.; Riles, K.; Rivera, B.; Rizzi, A.; Robertson, D.I.; Robertson, N.A.; Robison, L.; Roddy, S.; Rollins, J.; Romano, J.D.; Romie, J.; Rong, H.; Rose, D.; Rotthoff, E.; Rowan, S.; Rüdiger, A.; Russell, P.; Ryan, K.; Salzman, I.; Sandberg, V.; Sanders, G.H.; Sannibale, V.; Sathyaprakash, B.; Saulson, P.R.; Savage, R.; Sazonov, A.; Schilling, R.; Schlaufman, K.; Schmidt, V.; Schnabel, R.; Schofield, R.; Schutz, B.F.; Schwinberg, P.; Scott, S.M.; Seader, S.E.; Searle, A.C.; Sears, B.; Seel, S.; Seifert, F.; Sengupta, A.S.; Shapiro, C.A.; Shawhan, P.; Shoemaker, D.H.; Shu, Q.Z.; Sibley, A.; Siemens, X.; Sievers, L.; Sigg, D.; Sintes, A.M.; Smith, J.R.; Smith, M.; Smith, M.R.; Sneddon, P.H.; Spero, R.; Stapfer, G.; Steussy, D.; Strain, K.A.; Strom, D.; Stuver, A.; Summerscales, T.; Sumner, M.C.; Sutton, P.J.; Sylvestre, J.; Takamori, A.; Tanner, D.B.; Tariq, H.; Taylor, I.; Taylor, R.; Taylor, R.; Thorne, K.A.; Thorne, K.S.; Tibbits, M.; Tilav, S.; Tinto, M.; Tokmakov, K.V.; Torres, C.; Torrie, C.; Traylor, G.; Tyler, W.; Ugolini, D.; Ungarelli, C.; Vallisneri, M.; van Putten, M.; Vass, S.; Vecchio, A.; Veitch, J.; Vorvick, C.; Vyachanin, S.P.; Wallace, L.; Walther, H.; Ward, H.; Ware, B.; Watts, K.; Webber, D.; Weidner, A.; Weiland, U.; Weinstein, A.; Weiss, R.; Welling, H.; Wen, L.; Wen, S.; Whelan, J.T.; Whitcomb, S.E.; Whiting, B.F.; Wiley, S.; Wilkinson, C.; Willems, P.A.; Williams, P.R.; Williams, R.; Willke, B.; Wilson, A.; Winjum, B.J.; Winkler, W.; Wise, S.; Wiseman, A.G.; Woan, G.; Wooley, R.; Worden, J.; Wu, W.; Yakushin, I.; Yamamoto, H.; Yoshida, S.; Zaleski, K.D.; Zanolin, M.; Zawischa, I.; Zhang, L.; Zhu, R.; Zotov, N.; Zucker, M.; Zweizig, J.; Kramer, M.; Lyne, A.G. (College Park, MD : American Physical Society, 2005)
    We place direct upper limits on the amplitude of gravitational waves from 28 isolated radio pulsars by a coherent multidetector analysis of the data collected during the second science run of the LIGO interferometric ...

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