Auflistung An-Institute nach Titel

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  • Acernese, F.; Agathos, M.; Aiello, L.; Ain, A.; Allocca, A.; Amato, A.; Ansoldi, S.; Antier, S.; Arène, M.; Arnaud, N.; Ascenzi, S.; Astone, P.; Aubin, F.; Babak, S.; Badaracco, F.; Bader, M.K.M.; Bagnasco, S.; Baird, J.; Ballardin, G.; Baltus, G.; Barbieri, C.; Barneo, P.; Barone, F.; Barsuglia, M.; Barta, D.; Basti, A.; Bawaj, M.; Bazzan, M.; Bejger, M.; Belahcene, I.; Bernuzzi, S.; Bersanetti, D.; Bertolini, A.; Bischi, M.; Bitossi, M.; Bizouard, M.-A.; Blanch, O.; Bobba, F.; Boer, M.; Bogaert, G.; Boldrini, M.; Bondu, F.; Bonnand, R.; Boom, B.A.; Boschi, V.; Boudart, V.; Bouffanais, Y.; Bozzi, A.; Bradaschia, C.; Branchesi, M.; Breschi, M.; Briant, T.; Brighenti, F.; Brillet, A.; Brooks, J.; Bruno, G.; Bulik, T.; Bulten, H.J.; Buskulic, D.; Cagnoli, G.; Calloni, E.; Canepa, M.; Carapella, G.; Carbognani, F.; Carpinelli, M.; Carullo, G.; Diaz, J.C.; Casentini, C.; Caudill, S.; Cavalier, F.; Cavalieri, R.; Cella, G.; Cerdá-Durán, P.; Cesarini, E.; Chaibi, W.; Chanial, P.; Chassande-Mottin, E.; Chiadini, F.; Chierici, R.; Chincarini, A.; Chiummo, A.; Christensen, N.; Chua, S.; Ciani, G.; Ciecielag, P.; Cieślar, M.; Cifaldi, M.; Ciolfi, R.; Cipriano, F.; Cirone, A.; Clesse, S.; Cleva, F.; Coccia, E.; Cohadon, P.-F.; Cohen, D.E.; Colpi, M.; Conti, L.; Cordero-Carrión, I.; Corezzi, S.; Corre, D.; Cortese, S.; Coulon, J.-P.; Croquette, M.; Cudell, J.R.; Cuoco, E.; Curylo, M.; D'Angelo, B.; D'Antonio, S.; D'Onofrio, L.; D'Urso, D.; Canton, T.D.; Dattilo, V.; Davier, M.; De, Laurentis, M.; De, Matteis, F.; De, Pietri, R.; De, Rosa, R.; De, Rossi, C.; Degallaix, J.; Del, Pozzo, W.; Deléglise, S.; Depasse, A.; Di, Fiore, L.; Di, Giorgio, C.; Di, Giovanni, F.; Di, Giovanni, M.; Di, Girolamo, T.; Di, Lieto, A.; Di, Pace, S.; Di, Palma, I.; Di, Renzo, F.; Dietrich, T.; Drago, M.; Ducoin, J.-G.; Durante, O.; Duverne, P.-A.; Eisenmann, M.; Errico, L.; Estevez, D.; Fafone, V.; Farinon, S.; Fays, M.; Feng, F.; Fenyvesi, E.; Ferrante, I.; Fidecaro, F.; Figura, P.; Fiori, I.; Fiorucci, D.; Fittipaldi, R.; Fiumara, V.; Flaminio, R.; Font, J.A.; Fournier, J.-D.; Frasca, S.; Frasconi, F.; Frey, V.; Fronzé, G.G.; Gamba, R.; Garaventa, B.; Garufi, F.; Gemme, G.; Gennai, A.; Ghosh, A.; Giacomazzo, B.; Giacoppo, L.; Giri, P.; Gosselin, M.; Gouaty, R.; Grado, A.; Granata, M.; Granata, V.; Greco, G.; Grignani, G.; Grimaldi, A.; Grimm, S.J.; Gruning, P.; Guidi, G.M.; Guixé, G.; Guo, Y.; Gupta, P.; Haegel, L.; Halim, O.; Hannuksela, O.; Harder, T.; Haris, K.; Harms, J.; Heidmann, A.; Heitmann, H.; Hello, P.; Hemming, G.; Hennes, E.; Hofman, D.; Hui, V.; Idzkowski, B.; Iess, A.; Intini, G.; Jacqmin, T.; Janssens, K.; Jaranowski, P.; Jonker, R.J.G.; Karathanasis, C.; Katsanevas, S.; Kéfélian, F.; Khan, I.; Khetan, N.; Koekoek, G.; Koley, S.; Kolstein, M.; Królak, A.; La, Rosa, I.; Laghi, D.; Lamberts, A.; Lartaux-Vollard, A.; Lazzaro, C.; Leaci, P.; Leroy, N.; Letendre, N.; Linde, F.; Llorens-Monteagudo, M.; Longo, A.; Lorenzini, M.; Loriette, V.; Losurdo, G.; Lumaca, D.; MacQuet, A.; Magazzù, C.; Majorana, E.; Maksimovic, I.; Man, N.; Mangano, V.; Mantovani, M.; Mapelli, M.; Marchesoni, F.; Marion, F.; Marquina, A.; Marsat, S.; Martelli, F.; Martinez, M.; Martinez, V.; Masserot, A.; Mastrogiovanni, S.; Menendez-Vazquez, A.; Mereni, L.; Merzougui, M.; Metzdorff, R.; Miani, A.; Michel, C.; Milano, L.; Miller, A.; Milotti, E.; Minazzoli, O.; Minenkov, Y.; Mir, L.M.; Montani, M.; Morawski, F.; Mours, B.; Muciaccia, F.; Nagar, A.; Nardecchia, I.; Naticchioni, L.; Neilson, J.; Nelemans, G.; Nguyen, C.; Nissanke, S.; Nocera, F.; Oganesyan, G.; Olivetto, C.; Pagano, G.; Pagliaroli, G.; Palomba, C.; Pang, T.H.; Pannarale, F.; Paoletti, F.; Paoli, A.; Paolone, A.; Pascucci, D.; Pasqualetti, A.; Passaquieti, R.; Passuello, D.; Patricelli, B.; Pegoraro, M.; Perego, A.; Périgois, C.; Perreca, A.; Perriès, S.; Phukon, K.S.; Piccinni, O.J.; Pichot, M.; Piendibene, M.; Piergiovanni, F.; Pierini, L.; Pierro, V.; Pillant, G.; Pilo, F.; Pinard, L.; Pinto, I.M.; Piotrzkowski, K.; Placidi, E.; Plastino, W.; Poggiani, R.; Polini, E.; Popolizio, P.; Porter, E.K.; Pracchia, M.; Principe, M.; Prodi, G.A.; Prosposito, P.; Puecher, A.; Punturo, M.; Puosi, F.; Puppo, P.; Raaijmakers, G.; Radulesco, N.; Rapagnani, P.; Razzano, M.; Regimbau, T.; Rei, L.; Rettegno, P.; Ricci, F.; Riemenschneider, G.; Robinet, F.; Rocchi, A.; Rolland, L.; Romanelli, M.; Romano, R.; Romero, A.; Ronchini, S.; Rosińska, D.; Ruggi, P.; Salafia, O.S.; Salconi, L.; Samajdar, A.; Sanchis-Gual, N.; Santos, E.; Sassolas, B.; Sauter, O.; Sayah, S.; Seglar-Arroyo, M.; Sentenac, D.; Sequino, V.; Sharma, A.; Sieniawska, M.; Singh, N.; Singhal, A.; Sipala, V.; Sordini, V.; Sorrentino, F.; Sorrentino, N.; Soulard, R.; Spera, M.; Stachie, C.; Steer, D.A.; Stratta, G.; Sur, A.; Swinkels, B.L.; Tacca, M.; Tanasijczuk, A.J.; Martin, E.N.T.S.; Tonelli, M.; Torres-Forné, A.; Tosta, E, Melo, I.; Trapananti, A.; Travasso, F.; Tringali, M.C.; Trovato, A.; Tsang, K.W.; Turconi, M.; Valentini, M.; Van, Bakel, N.; Van, Beuzekom, M.; Van, Den, Brand, J.F.J.; Van, Den, Broeck, C.; Van, Der, Schaaf, L.; Vardaro, M.; Vasúth, M.; Vedovato, G.; Verkindt, D.; Vetrano, F.; Viceré, A.; Vinet, J.-Y.; Vocca, H.; Walet, R.C.; Was, M.; Zadrożny, A.; Zelenova, T.; Zendri, J.-P.; Mehmet, M.; Vahlbruch, H.; Lück, H.; Danzmann, K. (College Park, Md. : APS, 2020)
    The quantum radiation pressure and the quantum shot noise in laser-interferometric gravitational wave detectors constitute a macroscopic manifestation of the Heisenberg inequality. If quantum shot noise can be easily ...
  • Huntington, E.H.; Harb, C.C.; Heurs, Michèle; Ralph, T.C. (College Park, MD : American Physical Society, 2007)
    A quantum mechanical model is formulated to describe the coupling between pump intensity noise and laser frequency noise in a solid-state laser. The model allows us to investigate the limiting effects of closed-loop ...
  • Song, Hongbin; Yonezawa, Hidehiro; Kuntz, Katanya B.; Heurs, Michèle; Huntington, Elanor H. (College Park, MD : American Physical Society, 2014)
    Using entangled pairs of photons from a frequency comb and wide-band frequency-resolved homodyne detection, we propose a sequential quantum teleportation protocol for continuous variables that teleports an unknown state ...
  • Mourier, Pierre; Jiménez Forteza, Xisco; Pook-Kolb, Daniel; Krishnan, Badri; Schnetter, Erik (Ridge, NY : American Physical Society, 2021)
    It is expected that all astrophysical black holes in equilibrium are well described by the Kerr solution. Moreover, any black hole far away from equilibrium, such as one initially formed in a compact binary merger or by ...
  • Wollweber, Merve; Roth, Bernhard (Basel : MDPI AG, 2019)
    Currently, many optical modalities are being investigated, applied, and further developed for non-invasive analysis and sensing in the life sciences. To befit the complexity of the study objects and questions in this field, ...
  • Schulte, Marius; Martínez-Lahuerta, Victor J. (Wien : Verein zur Förderung des Open Access Publizierens in den Quantenwissenschaften, 2020)
    We consider a large class of Ramsey interferometry protocols which are enhanced by squeezing and un-squeezing operations before and after a phase signal is imprinted on the collective spin of N particles. We report an ...
  • Reinhardt, Jan Niklas; Staab, Martin; Yamamoto, Kohei; Bayle, Jean-Baptiste; Hees, Aurélien; Hartwig, Olaf; Wiesner, Karsten; Shah, Sweta; Heinzel, Gerhard (Ridge, NY : American Physical Society, 2024)
    Interspacecraft ranging is crucial for the suppression of laser frequency noise via time-delay interferometry (TDI). So far, the effects of onboard delays and ambiguities on the Laser Interferometer Space Antenna (LISA) ...
  • Geesmann, Fridolin Jakob; Mevert, Robin; Zuber, David; Morgner, Uwe (Washington, DC : Optica, 2023)
    Broadband tunable femtosecond laser pulses are of great interest in numerous fields, such as spectroscopy or imaging. Here, we report on the generation of rapidly tunable radiation in the near UV by using intracavity ...
  • Dal Canton, Tito; Nitz, Alexander H.; Gadre, Bhooshan; Cabourn Davies, Gareth S.; Villa-Ortega, Verónica; Dent, Thomas; Harry, Ian; Xiao, Liting (London : Institute of Physics Publ., 2021)
    The third observing run of Advanced LIGO and Advanced Virgo took place between 2019 April and 2020 March and resulted in dozens of gravitational-wave candidates, many of which are now published as confident detections. A ...
  • Rienäcker, Michael; Larionova, Yevgeniya; Krügener, Jan; Wolter, Sascha; Brendel, Rolf; Peibst, Robby (Les Ulis : EDP Sciences, 2021)
    Polysilicon-on-oxide (POLO) passivating contacts and interdigitated back-contact (IBC) cell technologies have recently attracted a lot of interest as candidates for the implementation in the next generation of solar cells. ...
  • Niewelt, T.; Steinhauser, B.; Richter, A.; Veith-Wolf, B.; Fell, A.; Hammann, B.; Grant, N.E.; Black, L.; Tan, J.; Youssef, A.; Murphy, J.D.; Schmidt, J.; Schubert, M.C.; Glunz, S.W. (Amsterdam [u.a.] : NH, Elsevier, 2022)
    Characterisation and optimization of next-generation silicon solar cell concepts rely on an accurate knowledge of intrinsic charge carrier recombination in crystalline silicon. Reports of measured lifetimes exceeding the ...
  • Nölke, C.; Claußen, S.; Dudziak, S.; Haferkamp, H.; Barcikowski, S. (Amsterdam : Elsevier B.V., 2010)
    Laser dispersing offers a great potential to fabricate layers or tracks with tailored properties threat duce abrasive or adhesive wear at the surface of highly stressed components. Different ceramic powder materials like ...
  • Kompetenzzentrum Digitales Handwerk, HPI (Hannover : Gottfried Wilhelm Leibniz Universität, 2018)
    Diese Broschüre richtet sich an Multiplikatoren aus Handwerksorganisationen, die sich als Entscheider, Bildungs- oder Beratungs-Experten auch selbst mit den Zukunftsfragen der Digitalen Transformation in Handwerks-Unternehmen ...
  • Setyawati, Yoshinta; Pürrer, Michael; Ohme, Frank (Bristol : IOP Publ., 2020)
    Theoretical gravitational-wave models of compact-binary mergers need to be accurate, but also fast in order to compare millions of signals in near real time with experimental data. Various regression and interpolation ...
  • Wissel, Lennart; Wittchen, Andreas; Schwarze, Thomas S.; Hewitson, Martin; Heinzel, Gerhard; Halloin, Hubert (College Park, Md. [u.a.] : American Physical Society, 2022)
    Laser interferometers are the core measurement tool in gravitational wave observatories. An important factor that can limit the performance is the relative power instability of the laser, a problem often called relative ...
  • Moalem, A.; Von Witzendorff, Philipp; Stute, U.; Overmeyer, Ludger (Amsterdam : Elsevier B.V., 2012)
    We demonstrate a technique, which significantly enhances the stability of copper welding with laser radiation. After modelling spot welding stability we conclude that oxide layer morphology typical for native oxide layers ...
  • Emminghaus, Nicole; Bernhard, Robert; Hermsdorf, Jörg; Kaierle, Stefan (London : Springer, 2022)
    The laser-based powder bed fusion of metals (PBF-LB/M) offers a variety of advantages over conventional processing techniques and the possibility to recycle and reuse powder increases its sustainability. However, the process ...
  • Ming, J.; Papa, M.A.; Eggenstein, H.-B.; Machenschalk, B.; Steltner, B.; Prix, R.; Allen, B.; Behnke, O. (London : Institute of Physics Publ., 2022)
    We present results of a search for periodic gravitational wave signals with frequencies between 20 and 400 Hz from the neutron star in the supernova remnant G347.3-0.5 using LIGO O2 public data. The search is deployed on ...
  • Dergachev, Vladimir; Papa, Maria Alessandra (Ridge, NY : American Physical Society, 2021)
    We present the results of an all-sky search for continuous gravitational wave signals with frequencies in the 1700-2000 Hz range from neutron stars with ellipticity of ≈10-8. The search employs the Falcon analysis pipeline ...
  • Dergachev, Vladimir; Papa, Maria Alessandra (College Park, MD : American Physical Society, 2020)
    We present the results of an all-sky search for continuous gravitational-wave signals with frequencies in the 500-1700 Hz range targeting neutron stars with ellipticity of 10-8. The search is done on LIGO O2 data using the ...

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