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Gerhard Rempe

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284:. The thesis was entitled "investigation of the interaction of Rydberg atoms with radiation" and reports on experiments performed in the group of Herbert Walther. In the same year he was awarded a first job offer to a permanent position as a lecturer at the Free University of Amsterdam in the Netherlands. Rempe remained in Munich and completed his habilitation in 1990 with the thesis "Quantum effects in the one-atom maser". From 1990 to 1991 he was Lecturer and from 1990 to 1992 Robert Andrews Millikan Fellow at the California Institute of Technology in Pasadena, California, US, working with 133: 308:. He was first to observe how a single atom repeatedly emits and absorbs a single photon. First experiments he performed with microwave photons in superconducting cavities. Later he expanded his interest to optical photons between mirrors of highest possible reflectivity. His experiments laid the foundation for the development of quantum nonlinear optics, in which a single particle, be it an atom or a photon, causes an effect that many particles cannot induce. 25: 177: 312:
feature of the interface is its ability to detect single photons nondestructively,< which opens new perspectives for a scalable quantum computer. The interface is also suitable to observe and control the motion of a single atom in real time, as well as to generate quantum light with noise below the shot noise level.
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Rempe has used his findings from basic research to develop novel interfaces between light and matter. These interfaces connect the everyday world with the quantum world and have potential applications as senders, receivers and memories of information in a future global quantum network. A remarkable
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In addition to his research and teaching activities, Rempe was and is engaged in academic self-administration, such as speaker of the Quantum Optics and Photonics section of the German Physical Society, the curator of several magazines such as "Physics in our Time", "Journal of Optics" and "Optics
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In a third research focus Rempe follows the goal to produce an ultracold gas of polyatomic molecules. The focus lies on the development of novel methods for slowing down complex molecules using a centrifuge and for cooling such molecules using the Sisyphus effect. The aim is to understand chemical
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Rempe has also done pioneering work in the field of atom optics and quantum gases. By means of an atom interferometer he was able to demonstrate experimentally that for an observed object passing through a double-slit arrangement quantum mechanical wave-particle duality is based on entanglement,
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instead of Heisenberg’s uncertainty relation for position and momentum, as often stated in textbooks. He has produced the first Bose-Einstein condensate outside the U.S. and has used it to generate, among others, a strongly correlated gas of molecules by means of the quantum Zeno effect.
296:, director at the Max Planck Institute of Quantum Optics and honorary professor at the Technical University of Munich. He declined simultaneous offers to the Swiss Federal Institute of Technology in Zurich, Switzerland, and the University of Bayreuth, Germany. 324:
Communications ", as chairperson of a selection panel of the European Research Council, as managing director of the Max Planck Institute of Quantum Optics and chairperson of the prize committee of the Stern-Gerlach medal of the German Physical Society.
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Ritter, Stephan; Nölleke, Christian; Hahn, Carolin; Reiserer, Andreas; Neuzner, Andreas; Uphoff, Manuel; Mücke, Martin; Figueroa, Eden; Bochmann, Joerg; Rempe, Gerhard (2012). "An elementary quantum network of single atoms in optical cavities".
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Zeppenfeld, Martin; Englert, Barbara G. U.; Glöckner, Rosa; Prehn, Alexander; Mielenz, Manuel; Sommer, Christian; van Buuren, Laurens D.; Motsch, Michael; Rempe, Gerhard (2012). "Sisyphus cooling of electrically trapped polyatomic molecules".
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Syassen, N.; Bauer, D. M.; Lettner, M.; Volz, T.; Dietze, D.; GarcĂ­a-Ripoll, J. J.; Cirac, J. I.; Rempe, G.; DĂĽrr, S. (6 June 2008). "Strong Dissipation Inhibits Losses and Induces Correlations in Cold Molecular Gases".
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reactions at low temperatures, to open new reaction channels, to prepare molecules for precision experiments, as well as producing neutral quantum many-body systems with a long-range electrical interaction.
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Ourjoumtsev, A.; Kubanek, A.; Koch, M.; Sames, C.; Pinkse, P. W. H.; Rempe, G.; Murr, K. (2011). "Observation of squeezed light from one atom excited with two photons".
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Chervenkov, S.; Wu, X.; Bayerl, J.; Rohlfes, A.; Gantner, T.; Zeppenfeld, M.; Rempe, G. (6 January 2014). "Continuous Centrifuge Decelerator for Polar Molecules".
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Kubanek, A.; Koch, M.; Sames, C.; Ourjoumtsev, A.; Pinkse, P. W. H.; Murr, K.; Rempe, G. (2009). "Photon-by-photon feedback control of a single-atom trajectory".
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Reiserer, Andreas; Kalb, Norbert; Rempe, Gerhard; Ritter, Stephan (9 April 2014). "A quantum gate between a flying optical photon and a single trapped atom".
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Gerhard Rempe studied mathematics and physics at the Universities of Essen and Munich between 1976 and 1982. In 1986 he received his PhD degree at the
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DĂĽrr, S.; Nonn, T.; Rempe, G. (1998). "Origin of quantum-mechanical complementarity probed by a 'which-way' experiment in an atom interferometer".
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Rempe, Gerhard; Walther, Herbert; Klein, Norbert (26 January 1987). "Observation of quantum collapse and revival in a one-atom maser".
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Reiserer, A.; Ritter, S.; Rempe, G. (14 November 2013). "Nondestructive Detection of an Optical Photon".
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Pinkse, P. W. H.; Fischer, T.; Maunz, P.; Rempe, G. (2000). "Trapping an atom with single photons".
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Rempe, G.; Thompson, R. J.; Brecha, R. J.; Lee, W. D.; Kimble, H. J. (23 September 1991).
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Wilk, Tatjana; Webster, Simon C.; Kuhn, Axel; Rempe, Gerhard (27 July 2007).
479: 448:"Optical bistability and photon statistics in cavity quantum electrodynamics" 424: 369: 1044: 667: 559: 527: 502: 1191: 1121: 1060: 939: 870: 811: 752: 683: 614: 544: 487: 432: 377: 132: 767: 1220: 1175: 1005: 923: 854: 736: 598: 393:"Observation of normal-mode splitting for an atom in an optical cavity" 439: 795: 698: 24: 1158: 1096: 1027: 982: 906: 719: 650: 629: 581: 494: 384: 1075: 1142: 954: 391:
Thompson, R. J.; Rempe, G.; Kimble, H. J. (24 February 1992).
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Academic staff of the Technical University of Munich
500: 292:. In 1999 he was appointed scientific member of the 635: 390: 1231:Circuit and Cavity Quantum Electrodynamics (CCQED) 458:(13). American Physical Society (APS): 1727–1730. 403:(8). American Physical Society (APS): 1132–1135. 339: 1237: 348:(4). American Physical Society (APS): 353–356. 1281:Academic staff of Vrije Universiteit Amsterdam 304:Rempe is considered a pioneer of the field of 1271:Ludwig Maximilian University of Munich alumni 960: 503:"Single-Atom Single-Photon Quantum Interface" 1286:Academic staff of the University of Konstanz 1157: 1095: 1026: 905: 718: 649: 580: 526: 268:Learn how and when to remove this message 120:Learn how and when to remove this message 131: 1238: 1226:Max Planck Institute of Quantum Optics 282:Ludwig Maximilian University of Munich 145:Max Planck Institute of Quantum Optics 170: 18: 1266:University of Duisburg-Essen alumni 13: 14: 1312: 1209: 175: 23: 299: 1296:German experimental physicists 1276:Max Planck Institute directors 1261:20th-century German physicists 1246:21st-century German physicists 1106:10.1103/physrevlett.112.013001 306:cavity quantum electrodynamics 161:quantum information processing 149:Technical University of Munich 147:and Honorary Professor at the 16:German physicist and professor 1: 327: 50:secondary or tertiary sources 186:biography of a living person 56:, especially if potentially 34:biography of a living person 7: 472:10.1103/physrevlett.67.1727 417:10.1103/physrevlett.68.1132 206:must be removed immediately 54:must be removed immediately 10: 1317: 362:10.1103/physrevlett.58.353 166: 1216:Homepage G. Rempe at MPQ 1084:Physical Review Letters 1045:10.1126/science.1155309 668:10.1126/science.1246164 528:10.1126/science.1143835 452:Physical Review Letters 397:Physical Review Letters 342:Physical Review Letters 290:University of Konstanz 200:Please help by adding 137: 48:Please help by adding 1221:Group Homepage at MPQ 195:references or sources 135: 136:Gerhard Rempe (2016) 1301:People from Bottrop 1176:10.1038/nature11595 1168:2012Natur.491..570Z 1037:2008Sci...320.1329S 1021:(5881): 1329–1331. 975:1998Natur.395...33D 924:10.1038/nature10170 916:2011Natur.474..623O 855:10.1038/nature08563 847:2009Natur.462..898K 788:2000Natur.404..365P 737:10.1038/nature13177 729:2014Natur.508..237R 660:2013Sci...342.1349R 644:(6164): 1349–1351. 599:10.1038/nature11023 591:2012Natur.484..195R 519:2007Sci...317..488W 464:1991PhRvL..67.1727R 409:1992PhRvL..68.1132T 354:1987PhRvL..58..353R 37:relies too much on 294:Max Planck Society 184:This section of a 138: 1152:(7425): 570–573. 900:(7353): 623–626. 713:(7495): 237–240. 575:(7393): 195–200. 278: 277: 270: 252: 153:molecular physics 130: 129: 122: 104: 1308: 1204: 1203: 1161: 1140: 1134: 1133: 1099: 1079: 1073: 1072: 1030: 1009: 1003: 1002: 958: 952: 951: 909: 889: 883: 882: 830: 824: 823: 796:10.1038/35006006 771: 765: 764: 722: 702: 696: 695: 653: 633: 627: 626: 584: 563: 557: 556: 530: 498: 492: 491: 443: 437: 436: 388: 382: 381: 337: 273: 266: 262: 259: 253: 251: 210: 202:reliable sources 179: 178: 171: 125: 118: 114: 111: 105: 103: 62: 27: 19: 1316: 1315: 1311: 1310: 1309: 1307: 1306: 1305: 1236: 1235: 1212: 1207: 1141: 1137: 1080: 1076: 1010: 1006: 959: 955: 890: 886: 831: 827: 772: 768: 703: 699: 634: 630: 564: 560: 499: 495: 444: 440: 389: 385: 338: 334: 330: 302: 274: 263: 257: 254: 217:"Gerhard Rempe" 211: 209: 199: 180: 176: 169: 126: 115: 109: 106: 69:"Gerhard Rempe" 63: 61: 47: 43:primary sources 28: 17: 12: 11: 5: 1314: 1304: 1303: 1298: 1293: 1288: 1283: 1278: 1273: 1268: 1263: 1258: 1253: 1248: 1234: 1233: 1228: 1223: 1218: 1211: 1210:External links 1208: 1206: 1205: 1135: 1074: 1004: 953: 884: 825: 766: 697: 628: 558: 493: 438: 383: 331: 329: 326: 301: 298: 286:H. 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Max Planck Institute of Quantum Optics
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