Cite

Ahlers H, Müntinga H, Wenzlawski A, Krutzik M, Tackmann G, Abend S, Gaaloul N, Giese E, Roura A, Kuhl R, Lämmerzahl C, Peters A, Windpassinger P, Sengstock K, Schleich WP, Ertmer W, Rasel EM (2016) Double Bragg interferometry. Physical Review Letters116: 173601AhlersHMüntingaHWenzlawskiAKrutzikMTackmannGAbendSGaaloulNGieseERouraAKuhlRLämmerzahlCPetersAWindpassingerPSengstockKSchleichWPErtmerWRaselEM2016Double Bragg interferometryPhysical Review Letters11617360110.1103/PhysRevLett.116.173601Search in Google Scholar

Breuer R (2010) Schwerelos: Europa Forscht im Weltraum, München, Germany: Spektrum Custom PublishingBreuerR2010Schwerelos: Europa Forscht im WeltraumMünchen, GermanySpektrum Custom PublishingSearch in Google Scholar

DDT (2017) Dryden Drop Tower. Oregon, USA: Portland State University https://www.pdx.edu/dryden-drop-towerDDT2017Dryden Drop TowerOregon, USAPortland State Universityhttps://www.pdx.edu/dryden-drop-towerSearch in Google Scholar

Del Rosso D (2013) Experiment Design Requirements and Guidelines for Microgravity Research. Houston, TX: National Aeronautics and Space AdministrationDel RossoD2013Experiment Design Requirements and Guidelines for Microgravity ResearchHouston, TXNational Aeronautics and Space AdministrationSearch in Google Scholar

Dittus H (2002) Caging für STEP. Final Report, FKZ 50OY0102. Bremen, Hannover, Germany: ZARMDittusH2002Caging für STEPFinal Report, FKZ 50OY0102.Bremen, Hannover, GermanyZARMSearch in Google Scholar

Dittus H (1991) Drop tower ‘Bremen’: a weightlessness laboratory on Earth. Endeavour15 (2): 72–78DittusH1991Drop tower ‘Bremen’: a weightlessness laboratory on EarthEndeavour152727810.1016/S0160-9327(05)80008-0Search in Google Scholar

Dittus H (2001) Untersuchungen zur Entwicklung des Caging-Mechanismus für die Mission MiniSTEP und Durchführung von begleitenden Fallturm-Tests. Final Report, FKZ 50OY98010. Bremen, Hannover, Germany: ZARMDittusH2001Untersuchungen zur Entwicklung des Caging-Mechanismus für die Mission MiniSTEP und Durchführung von begleitenden Fallturm-TestsFinal Report, FKZ 50OY98010.Bremen, Hannover, GermanyZARMSearch in Google Scholar

Dittus H, Schomisch AM (1990) Vacuum systems for microgravity experiments. Vacuum41: 2135–2137DittusHSchomischAM1990Vacuum systems for microgravity experimentsVacuum412135213710.1016/0042-207X(90)94201-ZSearch in Google Scholar

Fujita O (2009) 50M microgravity experiment facility: overview of “Cosmo Torre.” http://mechhm.eng.hokudai.ac.jp/~lsu/hastic/experimental_procedure.pdfFujitaO200950M microgravity experiment facility: overview of “Cosmo Torre.”http://mechhm.eng.hokudai.ac.jp/~lsu/hastic/experimental_procedure.pdfSearch in Google Scholar

Hadden J (2015) Falcon 9 Launch Vehicle: Payload User's Guide. Hawthorne, CA: SpaceXHaddenJ2015Falcon 9 Launch Vehicle: Payload User's GuideHawthorne, CASpaceXSearch in Google Scholar

Huang Y, Mao W (2013) First results derived from a drop-tower testing system for granular flow in a microgravity environment. Landslides10: 493–501HuangYMaoW2013First results derived from a drop-tower testing system for granular flow in a microgravity environmentLandslides1049350110.1007/s10346-013-0403-7Search in Google Scholar

Intrasys GmbH (2006) High Speed LSM Drive System: Intrasys Linear Synchron Motor Drive System for Amusement Rides. http://www.intrasys-gmbh.com/at/LSM_0205.pdfIntrasys GmbH2006High Speed LSM Drive System: Intrasys Linear Synchron Motor Drive System for Amusement Rideshttp://www.intrasys-gmbh.com/at/LSM_0205.pdfSearch in Google Scholar

Iwakami T, Nokura M (2005) Micro-gravity experiments at micro-gravity laboratory of Japan (MGLAB). In 56th International Astronautical Congress, Vol. 1, pp 1–7IwakamiTNokuraM2005Micro-gravity experiments at micro-gravity laboratory of Japan (MGLAB)In56th International Astronautical Congress11710.2514/6.IAC-05-A2.5.07Search in Google Scholar

Koide A (2001) JAMIC drop-shaft type microgravity facility accommodating 10-seconds microgravity. Journal of the Japan Society of Microgravity Application18: 136–139KoideA2001JAMIC drop-shaft type microgravity facility accommodating 10-seconds microgravityJournal of the Japan Society of Microgravity Application18136139Search in Google Scholar

Kommunarovich KY (2016) Academician V.P. Makeyev State Rocket Centre. Test centre: OAO Makeyev GRTs. http://www.makeyev.ru/labisp/KommunarovichKY2016Academician V.P. Makeyev State Rocket CentreTest centre: OAO Makeyev GRTs. http://www.makeyev.ru/labisp/Search in Google Scholar

Könemann T (2009) Konzeption, Entwicklung und Umsetzung von atomoptischen Fallturmexperimenten für den Einsatz unter Schwerelosigkeit am Fallturm Bremen. Dissertation. Bremen, Germany: Universität BremenKönemannT2009Konzeption, Entwicklung und Umsetzung von atomoptischen Fallturmexperimenten für den Einsatz unter Schwerelosigkeit am Fallturm BremenDissertation.Bremen, GermanyUniversität BremenSearch in Google Scholar

Könemann T, Kaczmarczik U, Gierse A, Greif A, Lutz T, Mawn S, Siemer J, Eigenbrod C, Kampen P von, Lämmerzahl C (2015) Concept for a next-generation drop tower system. Advances in Space Research55: 1728–1733KönemannTKaczmarczikUGierseAGreifALutzTMawnSSiemerJEigenbrodCKampenP vonLämmerzahlC2015Concept for a next-generation drop tower systemAdvances in Space Research551728173310.1016/j.asr.2014.12.028Search in Google Scholar

Kulas S, Vogt C, Resch A, Hartwig J, Ganske S, Matthias J, Schlippert D, Wendrich T, Ertmer W, Rasel EM, Damjanic M, Weßels P, Kohfeldt A, Luvsandamdin E, Schiemangk M, Grzeschik C, Krutzik M, Wicht A, Peters A, Herrmann S, Lämmerzahl C (2017) Miniaturized lab system for future cold atom experiments in microgravity. Microgravity Science and Technology29: 37–48KulasSVogtCReschAHartwigJGanskeSMatthiasJSchlippertDWendrichTErtmerWRaselEMDamjanicMWeßelsPKohfeldtALuvsandamdinESchiemangkMGrzeschikCKrutzikMWichtAPetersAHerrmannSLämmerzahlC2017Miniaturized lab system for future cold atom experiments in microgravityMicrogravity Science and Technology29374810.1007/s12217-016-9524-7Search in Google Scholar

Lagier R (2016) Ariane 5: User's Manual. Issue 5, Revision 2, ArianespaceLagierR2016Ariane 5: User's ManualIssue 5, Revision 2, ArianespaceSearch in Google Scholar

Lämmerzahl C, Steinberg T (2015) Droptowers. In Generation and Applications of Extra-Terrestrial Environments on Earth, DA Beysens and JJWA van Loon (eds), pp 45–73. Aalborg, Denmark: River PublishersLämmerzahlCSteinbergT2015DroptowersInGeneration and Applications of Extra-Terrestrial Environments on EarthBeysensDAvan LoonJJWA(eds),4573Aalborg, DenmarkRiver PublishersSearch in Google Scholar

Lotz C, Kämper T, Berlin H, Overmeyer L (2014) Innovative drive and guide concept for experiments under microgravity in the Einstein-Elevator. In Symposium on Automated Systems and Technologies, L. Overmeyer and V.P. Shkodyrev (eds), Berichte aus dem ITA, Vol. 4, pp 87–98. Garbsen, Germany: PZH-Verl. TEWISS - Technik und WissenLotzCKämperTBerlinHOvermeyerL2014Innovative drive and guide concept for experiments under microgravity in the Einstein-ElevatorInSymposium on Automated Systems and TechnologiesOvermeyerL.ShkodyrevV.P.(eds),Berichte aus dem ITA48798Garbsen, GermanyPZH-Verl. TEWISS - Technik und WissenSearch in Google Scholar

Lotz C, Overmeyer L (2013) Mechanische Ersatzmodelle zum Nachweis der Realisierbarkeit minimaler Restbeschleunigungen während der Freifallphase im Einstein-Elevator: Mechanical simulation model for verifying the feasibility of the minimal residual acceleration during the free-fall phase in the Einstein-Elevator. Logistics Journal13: 1–9LotzCOvermeyerL2013Mechanische Ersatzmodelle zum Nachweis der Realisierbarkeit minimaler Restbeschleunigungen während der Freifallphase im Einstein-Elevator: Mechanical simulation model for verifying the feasibility of the minimal residual acceleration during the free-fall phase in the Einstein-ElevatorLogistics Journal1319Search in Google Scholar

Lotz C, Rein M, Overmeyer L (2015) Steps for a reduction of vibrations of the roller guide in the Einstein-Elevator. In Proceedings of the Symposium Automated Systems and Technologies, VP Shkodyrev and L Overmeyer (eds), pp 87–98. St. Petersburg, Russia: Politechnika-serviceLotzCReinMOvermeyerL2015Steps for a reduction of vibrations of the roller guide in the Einstein-ElevatorInProceedings of the Symposium Automated Systems and TechnologiesShkodyrevVPOvermeyerL(eds),8798St. Petersburg, RussiaPolitechnika-serviceSearch in Google Scholar

Mori T, Goto K, Ohashi R, Sawaoka AB (1993) Capabilities and recent activities of Japan Microgravity Center (JAMIC). Microgravity Science and Technology5: 238–242MoriTGotoKOhashiRSawaokaAB1993Capabilities and recent activities of Japan Microgravity Center (JAMIC)Microgravity Science and Technology5238242Search in Google Scholar

Neumann E (2006) Zero Gravity Research Facility at NASA Glenn Research Center. https://www1.grc.nasa.gov/facilities/zero-g/NeumannE2006Zero Gravity Research Facility at NASA Glenn Research Centerhttps://www1.grc.nasa.gov/facilities/zero-g/Search in Google Scholar

Neumann E (2008) 2.2 second drop tower at NASA Glenn Research Center. https://www1.grc.nasa.gov/facilities/drop/NeumannE20082.2 second drop tower at NASA Glenn Research Centerhttps://www1.grc.nasa.gov/facilities/drop/Search in Google Scholar

Neumann E (2017) Zero Gravity Research Facility User's Guide. https://www1.grc.nasa.gov/wp-content/uploads/Zero-Gravity-Research-Facility-users-guide.pdfNeumannE2017Zero Gravity Research Facility User's Guidehttps://www1.grc.nasa.gov/wp-content/uploads/Zero-Gravity-Research-Facility-users-guide.pdfSearch in Google Scholar

Nokura M (2008) Improvement plan of the electrical equipment in MGLAB. In Proceedings of Third International Symposium on Physical Science in Space, Vol 25, pp 629–634NokuraM2008Improvement plan of the electrical equipment in MGLABInProceedings of Third International Symposium on Physical Science in Space25629634Search in Google Scholar

Perez E (2012) Soyuz: User's Manual. Issue 2, Revision 0, ArianespacePerezE2012Soyuz: User's ManualIssue 2, Revision 0, ArianespaceSearch in Google Scholar

Pletser V, Kumei Y (2015) Parabolic flights. In Generation and Applications of Extra-Terrestrial Environments on Earth, DA Beysens and JJWA van Loon (eds), pp 61–73. Aalborg, Denmark: River PublishersPletserVKumeiY2015Parabolic flightsInGeneration and Applications of Extra-Terrestrial Environments on EarthBeysensDAvan LoonJJWA(eds),6173Aalborg, DenmarkRiver Publishers10.1201/9781003338277-9Search in Google Scholar

Preu P, Joop O, Ruyters G, Kuhl R, Braun M, Froke R (2014) TEXUS: Mit Forschungsraketen in die Schwerelosigkeit. http://www.dlr.de/rd/Portaldata/28/Resources/dokumente/publikationen/Broschuere_TEXUS_hires.pdfPreuPJoopORuytersGKuhlRBraunMFrokeR2014TEXUS: Mit Forschungsraketen in die Schwerelosigkeithttp://www.dlr.de/rd/Portaldata/28/Resources/dokumente/publikationen/Broschuere_TEXUS_hires.pdfSearch in Google Scholar

Selig H, Dittus H, Lämmerzahl C (2010) Drop tower microgravity improvement towards the nano-g level for the MICROSCOPE payload tests. Microgravity Science and Technology22: 539–549SeligHDittusHLämmerzahlC2010Drop tower microgravity improvement towards the nano-g level for the MICROSCOPE payload testsMicrogravity Science and Technology2253954910.1007/s12217-010-9210-0Search in Google Scholar

Selig H, Liorzou F (2013) Free fall test overview: MICROSCOPE Colloquium II. http://gram.oca.eu/Ressources_doc/2-Microscope-Colloquium-2013/23.H.Selig.F.Liorzou.Free.fall.test.pdfSeligHLiorzouF2013Free fall test overview: MICROSCOPE Colloquium IIhttp://gram.oca.eu/Ressources_doc/2-Microscope-Colloquium-2013/23.H.Selig.F.Liorzou.Free.fall.test.pdfSearch in Google Scholar

Selig H, List M (2011) Free fall payload test environment and mission simulation. http://gram.oca.eu/Ressources_doc/EP_Colloquium_2011/9%20H%20Selig.pdfSeligHListM2011Free fall payload test environment and mission simulationhttp://gram.oca.eu/Ressources_doc/EP_Colloquium_2011/9%20H%20Selig.pdfSearch in Google Scholar

Steinberg T (2016) Microgravity Drop Tower: Science and Engineering Faculty. https://www.qut.edu.au/research-all/research-projects/microgravity-drop-towerSteinbergT2016Microgravity Drop Tower: Science and Engineering Facultyhttps://www.qut.edu.au/research-all/research-projects/microgravity-drop-towerSearch in Google Scholar

Steinberg T (2007) Reduced gravity testing and research capabilities at Queensland University of Technology's new 2.0 second drop tower. In 16th Australasian Fluid Mechanics Conference, Vol 1, pp 650–653SteinbergT2007Reduced gravity testing and research capabilities at Queensland University of Technology's new 2.0 second drop towerIn16th Australasian Fluid Mechanics Conference165065310.4028/0-87849-475-8.21Search in Google Scholar

Urban DL (2015) Drop tower and aircraft capabilities. In 31st American Society for Gravitational and Space Research Annual Meeting, Alexandria, VAUrbanDL2015Drop tower and aircraft capabilitiesIn31st American Society for Gravitational and Space Research Annual MeetingAlexandria, VASearch in Google Scholar

van Loon JJWA (2015) Centrifuges. In Generation and Applications of Extra-Terrestrial Environments on Earth, DA Beysens and JJWA van Loon (eds), pp 109–113. Aalborg, Denmark: River Publishersvan LoonJJWA2015CentrifugesInGeneration and Applications of Extra-Terrestrial Environments on EarthBeysensDAvan LoonJJWA(eds),109113Aalborg, DenmarkRiver Publishers10.1201/9781003338277-13Search in Google Scholar

von Kampen P, Kaczmarczik U, Rath HJ (2006) The new drop tower catapult system. Acta Astronautica59: 278–283von KampenPKaczmarczikURathHJ2006The new drop tower catapult systemActa Astronautica5927828310.2514/6.IAC-05-A2.5.08Search in Google Scholar

Wan SH, Yin MG, Guan XD, Lin H, Xie JC, Hu WR (2010) Drop Tower Beijing and Short-Time Microgravity Experiments. In 38th Annual COSPAR Scientific Assembly, https://www.cospar-assembly.org/abstractcd/OLD/COSPAR-10/abstracts/data/pdf/abstracts/G02-0006-10.pdfWanSHYinMGGuanXDLinHXieJCHuWR2010Drop Tower Beijing and Short-Time Microgravity ExperimentsIn38th Annual COSPAR Scientific Assemblyhttps://www.cospar-assembly.org/abstractcd/OLD/COSPAR-10/abstracts/data/pdf/abstracts/G02-0006-10.pdfSearch in Google Scholar

ZARM FABmbH (2011) User Manual: Drop Tower Bremen. https://www.zarm.uni-bremen.de/fileadmin/user_upload/drop_tower/Users_Manual_0412.pdfZARM FABmbH2011User Manual: Drop Tower Bremenhttps://www.zarm.uni-bremen.de/fileadmin/user_upload/drop_tower/Users_Manual_0412.pdfSearch in Google Scholar

Zhang X, Yuan L, Wu W (2005) Some key technics of drop tower experiment device of National Microgravity Laboratory (China). Science in China Press48: 305–316ZhangXYuanLWuW2005Some key technics of drop tower experiment device of National Microgravity Laboratory (China)Science in China Press4830531610.1360/102004-21Search in Google Scholar

eISSN:
2332-7774
Idioma:
Inglés
Calendario de la edición:
2 veces al año
Temas de la revista:
Life Sciences, other, Materials Sciences, Physics