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wiki:demag_papers [2022/11/11 23:02]
henri.godfrin@neel.cnrs.fr [Nuclear Cooling]
wiki:demag_papers [2022/12/15 13:56] (current)
henri.godfrin@neel.cnrs.fr
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 ====== Articles on Nuclear Demagnetization ====== ====== Articles on Nuclear Demagnetization ======
  
-==== Nuclear Cooling ==== 
  
   * Nuclear Cooling, N. Kurti, F. N. H. Robinson, F. Simon, D. A. Spohr, Nature 178 (1956) 450, [[https://doi.org/10.1038/178450a0]]   * Nuclear Cooling, N. Kurti, F. N. H. Robinson, F. Simon, D. A. Spohr, Nature 178 (1956) 450, [[https://doi.org/10.1038/178450a0]]
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   * Cooling of 3He to 1 mK by nuclear demagnetization of PrNi5, K.Andres, S.Darack, Physica B+C 86–88 (1977) 1071-1076, [[https://doi.org/10.1016/0378-4363(77)90799-9]]   * Cooling of 3He to 1 mK by nuclear demagnetization of PrNi5, K.Andres, S.Darack, Physica B+C 86–88 (1977) 1071-1076, [[https://doi.org/10.1016/0378-4363(77)90799-9]]
  
 +  * Nuclear Demagnetization of PrS and PrNi5, C. Buchal, K. J. Fischer, M. Kubota, R. M. Mueller, F. Pobell, Journal de Physique Lettres 39 (1978) L457-L458, [[https://doi.org/10.1051/jphyslet:019780039023045700 ]]
  
-Nuclear Demagnetization of PrS and PrNi5CBuchalK. J. Fischer, MKubotaRMMueller, F. Pobell, Journal de Physique Lettres 39 (1978) L457-L458, doi.org/10.1051/jphyslet:019780039023045700+  * Two Stage Nuclear Demagnetization ExperimentsRHunikEBongers, J.AKonterW.JHuiskamp, Journal de Physique Colloques 39 (1978) C6-1155-C6-1156[[https://doi.org/10.1051/jphyscol:19786511]]
  
-Two Stage Nuclear Demagnetization Experiments, R. HunikEBongersJ.AKonterW.JHuiskampJournal de Physique Colloques 39 (1978C6-1155-C6-1156, doi.org/10.1051/jphyscol:19786511+  * A Double-stage nuclear demagnetization refrigerator, R. M. MuellerChrBuchalHRFolleMKubota, FPobellCryogenics 20 (1980395-407[[https://doi.org/10.1016/S0011-2275(80)80049-X]]
  
-A Double-stage nuclear demagnetization refrigerator, R. M. MuellerChr. Buchal, H. R. Folle, M. Kubota, F. Pobell, Cryogenics 20 (1980395-407, doi.org/10.1016/S0011-2275(80)80049-X+  * Nuclear refrigeration properties of PrNi5H. R. Folle, M. KubotaCh. Buchal, R. M. Mueller, F. Pobell, Zeitschrift für Physik B Condensed Matter 41 (1981223–228[[https://doi.org/10.1007/BF01294426]]
  
-Nuclear refrigeration properties of PrNi5, H. R. Folle, M. Kubota, Ch. Buchal, R. M. Mueller, F. Pobell, Zeitschrift für Physik Condensed Matter 41 (1981223–228, doi.org/10.1007/BF01294426+  * The quest for ultralow temperatures: What are the limitations?, F. Pobell, Physica B+C 109–110 (19821485-1498[[https://doi.org/10.1016/0378-4363(82)90172-3]]
  
-The quest for ultralow temperatures: What are the limitations?FPobellPhysica B+109–110 (19821485-1498, doi.org/10.1016/0378-4363(82)90172-3+  * New method for nuclear cooling into the microkelvin regimeDI. Bradley, A. M. Guénault, V. Keith, C. J. Kennedy, I. E. Miller, S. G. Musset, G. R. Pickett, W. P. Pratt, Jr., Journal of Low Temperature Physics 57 (1984359-390[[https://doi.org/10.1007/BF00681199]]
  
-New method for nuclear cooling into the microkelvin regimeDI. BradleyA. MGuénaultVKeithCJ. KennedyI. EMillerSG. Musset, G. R. Pickett, W. P. PrattJr., Journal of Low Temperature Physics 57 (1984) 359-390, doi.org/10.1007/BF00681199+  * Two-stage nuclear demagnetization refrigerator reaching 27 µKHIshimotoNNishidaTFurubayashiMShinoharaYTakanoYMiuraKÔno, Journal of Low Temperature Physics 55 (1984) 17–31[[https://doi.org/10.1007/BF00683649]]
  
-Two-stage nuclear demagnetization refrigerator reaching 27 µKHIshimoto, NNishidaT. Furubayashi, M. Shinohara, Y. Takano, Y. Miura, K. Ôno, Journal of Low Temperature Physics 55 (1984) 17–31, doi.org/10.1007/BF00683649+  * Adiabatic nuclear demagnetization: Two sophisticated experimentsOVLounasmaaPhysica B+C 126 (1984) 8-17, [[https://doi.org/10.1016/0378-4363(84)90140-2]] 
  
-Adiabatic nuclear demagnetization: Two sophisticated experimentsOVLounasmaaPhysica B+C 126 (19848-17, doi.org/10.1016/0378-4363(84)90140-2+  * Optimization procedure for the cooling of Liquid 3He by adiabatic demagnetization of praseodymium nickelJMParpiaW. P. Kirk, P. S. Kobiela, T. L. Rhodes, Z. Olejniczak, G. N. Parker, Review of Scientific Instruments 56 (1985437-443[[https://doi.org/10.1063/1.1138319]] 
  
-Optimization procedure for the cooling of Liquid 3He by adiabatic demagnetization of praseodymium nickelJMParpiaWPKirk, P. S. KobielaTLRhodesZOlejniczakG. N. Parker, Review of Scientific Instruments 56 (1985437-443, doi.org/10.1063/1.1138319+  * The Bayreuth Nuclear Demagnetization RefrigeratorKGloos, PSmeibidlCKennedy, ASingsaas, P. SekowskiRMMuellerFPobellJournal of Low Temperature Physics 73 (1988101-136[[https://doi.org/10.1007/BF00114919]] 
  
-The Bayreuth Nuclear Demagnetization RefrigeratorKGloosPSmeibidl, C. Kennedy, A. SingsaasP. Sekowski, R. M. Mueller, F. Pobell, Journal of Low Temperature Physics 73 (1988101-136, doi.org/10.1007/BF00114919+  * A Nuclear Demagnetization Cryostat for ThermometryWBuckDHechtfischer, A. HoffmannPhysica B 165  199049-50
  
-Nuclear Demagnetization Cryostat for ThermometryWBuckDHechtfischerAHoffmannPhysica B 165  1990) 49-50+  * Compact PrNi5 nuclear demagnetization cryostat, S. A. J. WiegersTHataCC. KranenburgPG. van de HaarR. Jochemsen, G. Frossati, Cryogenics 30 (1990) 770-774, [[https://doi.org/10.1016/0011-2275(90)90274-G]] 
  
-Compact PrNi5 nuclear demagnetization cryostatSA. J. Wiegers, T. Hata, C. C. Kranenburg, P. G. van de Haar, R. Jochemsen, G. FrossatiCryogenics 30 (1990770-774, doi.org/10.1016/0011-2275(90)90274-G+  * Nuclear refrigeration and thermometry at microkelvin temperaturesFPobellJournal of Low Temperature Physics 87 (1992635–649[[https://doi.org/10.1007/BF00114919]] 
  
-Nuclear refrigeration and thermometry at microkelvin temperatures, F. Pobell, Journal of Low Temperature Physics 87 (1992) 635–649, doi.org/10.1007/BF00114919+  * Nuclear demagnetization cryostat at University of Florida Microkelvin LaboratoryJ. Xu, O. Avenel, J. S. Xia, M.-F. Xu, T. Lang, P. L. Moyland, W. Ni, E. D. Adams, G. G. Ihas, M. V. Meisel, N. S. Sullivan, Y. Takano, Journal of Low Temperature Physics 89 (1992) 719-723[[https://doi.org/10.1007/BF00694125]] 
  
-Nuclear demagnetization cryostat at University of Florida Microkelvin LaboratoryJ. Xu, O. Avenel, J. S. Xia, M.-F. XuTLangPL. MoylandW. Ni, E. D. Adams, G. G. Ihas, M. V. Meisel, N. S. SullivanYTakanoJournal of Low Temperature Physics 89 (1992719-723, doi.org/10.1007/BF00694125+  * A nuclear demagnetization cryostat for nuclear ordering of hcp solid 3He, S. Abe, M. NozawaAIkeyaHTsujii, S. InoueTMamiyaPhysica B: Condensed Matter 194–196 (199449-50[[https://doi.org/10.1016/0921-4526(94)90354-9]] 
  
-A nuclear demagnetization cryostat for nuclear ordering of hcp solid 3He, SAbeMNozawaAIkeya, H. Tsujii, S. InoueT. Mamiya, Physica B: Condensed Matter 194–196 (1994) 49-50, doi.org/10.1016/0921-4526(94)90354-9+  * Direct demagnetization cooling of high-density solid 3He, TOkamotoHFukuyamaHAkimoto, H. Ishimoto, S. OgawaPhysical Review Letters 72 (1994) 868-871[[https://doi.org/10.1103/PhysRevLett.72.868]] 
  
-Direct demagnetization cooling of high-density solid 3HeTOkamotoHFukuyamaHAkimotoHIshimoto, S. OgawaPhysical Review Letters 72 (1994) 868-871, doi.org/10.1103/PhysRevLett.72.868+  * A compact copper nuclear demagnetization refrigeratorGFrossatiPG. van der HaarMW. MeiselPRemeijer, S. C. Steel, R. Wagner, C. M. C. M. van WoerkensPhysica B: Condensed Matter 194–196 (1994) 53-54[[https://doi.org/10.1016/0921-4526(94)90356-5]] 
  
-A compact copper nuclear demagnetization refrigerator, G. FrossatiPGvan der HaarMWMeiselPRemeijerSCSteelRWagnerCMC. M. van WoerkensPhysica B: Condensed Matter 194–196 (1994) 53-54, doi.org/10.1016/0921-4526(94)90356-5+  * Nuclear demagnetization refrigerator with automatic controlpick up and data process systemAAGolubVAGoncharovVR. LitvinovVAMikheevE. YRudavskiiYATokar, A. M. UsenkoVAShvarts, Fizika Nizkih Temperatur 21 (1995974-982
  
 +  * Pressure measurement during nuclear demagnetization of BCC and HCP solid 3He, T. Lang, P. L. Moyland, D. A. Sergatskov, J. Xu, E. D. Adams, Y. Takano, Journal of Low Temperature Physics 101 (1995) 677–681, [[https://doi.org/10.1007/BF00753373]] 
  
-Nuclear demagnetization refrigerator with automatic controlpick up and data process system, AAGolubV. A. GoncharovVR. LitvinovV. A. MikheevE. Y. Rudavskii, Y. A. Tokar, A. M. UsenkoVAShvartsFizika Nizkih Temperatur 21 (1995) 974-982+  * The new cornell copper demagnetization stageENSmith, A. SawadaLPollackK. A. CorbettJ. M. ParpiaRCRichardsonJournal of Low Temperature Physics 101 (1995) 593–598, [[https://doi.org/10.1007/BF00753359]] 
  
-Pressure measurement during nuclear demagnetization of BCC and HCP solid 3HeTLangP. LMoylandDASergatskovJ. Xu, EDAdamsYTakano, Journal of Low Temperature Physics 101 (1995677681, doi.org/10.1007/BF00753373+  * The new grenoble 100 μK refrigeratorCBäuerleJBossyYuMBunkovSNFisherChr Gianèse, HGodfrinCzechoslovak Journal of Physics 46 (199627912792[[https://doi.org/10.1007/BF02570382]] 
  
-The new cornell copper demagnetization stage, E. N. Smith, A. Sawada, L. Pollack, K. A. Corbett, J. M. ParpiaRCRichardson, Journal of Low Temperature Physics 101 (1995593598, doi.org/10.1007/BF00753359+  * Thermodynamic description of nuclear demagnetization experiments, J. EngertPGStrchlowCzechoslovak Journal of Physics 46 (199627892790[[https://doi.org/10.1007/BF02570381]] 
  
-The new grenoble 100 μK refrigerator, CBäuerle, J. Bossy, Yu. M. Bunkov, SNFisherChr Gianèse, HGodfrinCzechoslovak Journal of Physics 46 (19962791–2792, doi.org/10.1007/BF02570382+  * Košice nuclear demagnetization refrigerator, PSkyba, J. Nyéki, E. Gažo, V. Makroczyová, Yu. M. Bunkov, DASergackovAFeherCryogenics 37 (1997293-297[[https://doi.org/10.1016/S0011-2275(97)00021-0]] 
  
-Thermodynamic description of nuclear demagnetization experimentsJEngert, P. GStrchlowCzechoslovak Journal of Physics 46 (199627892790, doi.org/10.1007/BF02570381+  * Nuclear magnetic properties of aluminiumWWendler, P. Smeibidl, FPobell, Journal of Low Temperature Physics 108 (1997291304[[https://doi.org/10.1007/BF02398716]] 
  
-Košice nuclear demagnetization refrigeratorPSkyba, JNyékiEGažo, V. Makroczyová, Yu. M. Bunkov, D. ASergackovAFeherCryogenics 37 (1997293-297, doi.org/10.1016/S0011-2275(97)00021-0+  * Simple Nuclear Demagnetization StageVVDmitrievI. V. Kosarev, D. VPonarinRScheibelJournal of Low Temperature Physics 113 (1998945–949[[https://doi.org/10.1023/A:1022579628345]] 
  
-Nuclear magnetic properties of aluminiumWWendler, PSmeibidlFPobellJournal of Low Temperature Physics 108 (1997291–304, doi.org/10.1007/BF02398716+  * Nuclear cooling and spin properties of rhodium down to picokelvin temperaturesJTTuoriniemiTA. KnuuttilaPhysica B: Condensed Matter 280 (2000474-478[[https://doi.org/10.1016/S0921-4526(99)01839-6]]  
  
-Simple Nuclear Demagnetization StageVVDmitrievIVKosarevDVPonarinRScheibel, Journal of Low Temperature Physics 113 (1998945949, doi.org/10.1023/A:1022579628345+  * A Versatile Nuclear Demagnetization Cryostat for Ultralow Temperature ResearchWYao, TA. KnuuttilaKKNummilaJEMartikainenAS. Oja, O. V. Lounasmaa, Journal of Low Temperature Physics 120 (2000121150[[https://doi.org/10.1023/A:1004665020659]] 
  
-Nuclear cooling and spin properties of rhodium down to picokelvin temperaturesJTTuoriniemiTAKnuuttilaPhysica B: Condensed Matter 280 (2000474-478, doi.org/10.1016/S0921-4526(99)01839-6+  * Cryostat for optical observations below 1 mK and in strong magnetic fieldsRvan Rooijen, AMarchenkovHAkimoto, OAndreevaP.van de Haar, R. Jochemsen, G. Frossati, Journal of Low Temperature Physics 124 (2001497-511[[https://doi.org/10.1023/A:1017527320225]] 
  
-A Versatile Nuclear Demagnetization Cryostat for Ultralow Temperature ResearchW. YaoT. A. KnuuttilaK. KNummila, J. E. Martikainen, A. S. Oja, O. V. Lounasmaa, Journal of Low Temperature Physics 120 (2000121–150, doi.org/10.1023/A:1004665020659+  * Nuclear orientation and nuclear cooling experiments in Oxford and Helsinkipart 1Progress before 1940BBleaney, O. V. Lounasmaa,Notes and Records: the Royal Society Journal of the History of Science 57 (2003317-322[[https://doi.org/10.1098/rsnr.2003.0217]] 
  
-Cryostat for optical observations below 1 mK and in strong magnetic fields, Rvan RooijenAMarchenkov, H. Akimoto, O. Andreeva, P.van de Haar, R. Jochemsen, G. Frossati, Journal of Low Temperature Physics 124 (2001497-511, doi.org/10.1023/A:1017527320225+  * Nuclear orientation and nuclear cooling experiements in Oxford and Helsinki Part 2Progress from 1945 to 1970BBleaney, O. VLounasmaaNotes and Records: the Royal Society Journal of the History of Science 57 (2003), 323-330[[https://doi.org/10.1098/rsnr.2003.0218]] 
  
-Nuclear orientation and nuclear cooling experiments in Oxford and Helsinkipart 1, Progress before 1940BBleaney, O. VLounasmaa,Notes and Recordsthe Royal Society Journal of the History of Science 57 (2003) 317-322, doi.org/10.1098/rsnr.2003.0217+  * Study of heat leaks to copper nuclear demagnetization stageH. NakagawaHYano, O. Ishikawa, THataPhysica BCondensed Matter 329–333 (2003) 1606-1607[[https://doi.org/10.1016/S0921-4526(02)02422-5]] 
  
-Nuclear orientation and nuclear cooling experiements in Oxford and Helsinki Part 2Progress from 1945 to 1970BBleaneyOV. LounasmaaNotes and Records: the Royal Society Journal of the History of Science 57 (2003), 323-330, doi.org/10.1098/rsnr.2003.0218+  * Direct Nuclear Demagnetization of Two Dimensional Solid 3He Adsorbed on Graphite, RMasutomiYKarakiHIshimoto, Journal of Low Temperature Physics 134 (200449–54[[https://doi.org/10.1023/B:JOLT.0000012533.21563.b1]] 
  
-Study of heat leaks to copper nuclear demagnetization stageHNakagawaHYanoOIshikawaTHataPhysica B: Condensed Matter 329–333 (20031606-1607, doi.org/10.1016/S0921-4526(02)02422-5+  * Construction of an ultra low temperature cryostat with an automated He-3 melting pressure thermometerPBhupathiJCancinoHC. ChoiYLeeAIP Conference Proceedings 850 (20061571
  
-Direct Nuclear Demagnetization of Two Dimensional Solid 3He Adsorbed on GraphiteRMasutomiYKarakiHIshimoto, Journal of Low Temperature Physics 134 (200449–54, doi.org/10.1023/B:JOLT.0000012533.21563.b1+  * Construction of a Nuclear Cooling StagePStrehlowHNuzhaEBork, Journal of Low Temperature Physics 147 (200781-93[[https://doi.org/10.1007/s10909-006-9300-y]] 
  
-Construction of an ultra low temperature cryostat with an automated He-3 melting pressure thermometerPBhupathiJCancinoHCChoiYLeeAIP Conference Proceedings 850 (20061571+  * Method for cooling nanostructures to microkelvin temperaturesAC. ClarkKK. SchwarzwälderTBandi, DMaradanDM. ZumbühlReview of Scientific Instruments 81 (2010103904, [[https://doi.org/10.1063/1.3489892]] 
  
-Construction of a Nuclear Cooling StagePStrehlowHNuzhaEBorkJournal of Low Temperature Physics 147 (2007) 81-93doi.org/10.1007/s10909-006-9300-y+  * Setting up of a microKelvin refrigerator facility at TIFRH. RNarenRS. SannabhadtiAKumarV. ArolkarAde Waard, GFrossati, S. Ramakrishan, Current Science 101 (2011) 28-34]]
  
-Method for cooling nanostructures to microkelvin temperaturesACClarkKKSchwarzwälderTBandiDMaradanDM. ZumbühlReview of Scientific Instruments 81 (2010103904, doi.org/10.1063/1.3489892+  * The Vienna Nuclear Demagnetization RefrigeratorDHNguyenASidorenko, MMüllerSPaschenAWaardGFrossatiJournal of Physics: Conference Series 400 (2012052024[[https://doi.org/10.1088/1742-6596/400/5/052024]] 
  
-Setting up of a microKelvin refrigerator facility at TIFRHRNarenRSSannabhadti, A. KumarVArolkar, A. de WaardG. Frossati, S. Ramakrishan, Current Science 101 (201128-34+  * A microkelvin cryogen-free experimental platform with integrated noise thermometryGBatey, ACaseyMNCuthbert, A. J. MatthewsJSaunders, A. ShibaharaNew Journal of Physics 15 (2013113034, [[https://doi.org/10.1088/1367-2630/15/11/113034]] 
  
-The Vienna Nuclear Demagnetization Refrigerator, D. H. Nguyen, A. Sidorenko, M. Müller, S. PaschenAWaardG. Frossati, Journal of Physics: Conference Series 400 (2012052024, doi.org/10.1088/1742-6596/400/5/052024+  * Nuclear demagnetization for ultra-low temperatures, S. AbeKMatsumotoCryogenics 62 (2014213-220[[https://doi.org/10.1016/j.cryogenics.2014.04.004]] 
  
-A microkelvin cryogen-free experimental platform with integrated noise thermometry, GBateyACaseyMN. CuthbertA. J. Matthews, J. Saunders, A. ShibaharaNew Journal of Physics 15 (2013113034, doi.org/10.1088/1367-2630/15/11/113034+  * Dry demagnetization cryostat for sub-millikelvin helium experiments: Refrigeration and thermometry, ITodoshchenkoJ.-PKaikkonenRBlaauwgeersP. J. Hakonen, A. SavinReview of Scientific Instruments 85 (2014085106[[https://doi.org/10.1063/1.4891619]] 
  
-Nuclear demagnetization for ultra-low temperatures, S. AbeKMatsumotoCryogenics 62 (2014213-220, doi.org/10.1016/j.cryogenics.2014.04.004+  * On-chip magnetic cooling of a nanoelectronic device, D. I. Bradley, A. M. Guénault, D. Gunnarsson, R. P. Haley, S. HoltAT. JonesYu. A. Pashkin, J. Penttilä, J. R. Prance, M. Prunnila, L. Roschier, Scientific Reports 7 (201745566[[https://doi.org/10.1038/srep45566]] 
  
-Dry demagnetization cryostat for sub-millikelvin helium experiments: Refrigeration and thermometryITodoshchenkoJ.-PKaikkonenRBlaauwgeersPJHakonenASavin, Review of Scientific Instruments 85 (2014085106, doi.org/10.1063/1.4891619+  * Magnetic cooling for microkelvin nanoelectronics on a cryofree platformMPalmaDMaradan, LCasparisT.-M. LiuFNM. FroningDM. Zumbühl, Review of Scientific Instruments 88 (2017043902[[https://doi.org/10.1063/1.4979929]] 
  
-On-chip magnetic cooling of a nanoelectronic deviceDIBradley, A. M. Guénault, D. Gunnarsson, R. P. Haley, S. Holt, A. T. Jones, Yu. A. Pashkin, J. PenttiläJ. R. Prance, MPrunnila, L. RoschierScientific Reports 7 (201745566, doi.org/10.1038/srep45566+  * Sub-millikelvin station at Synergetic Extreme Condition User FacilityZGCheng, J. FanXJing, L. LuChinese Physics B 27 (2018070702[[https://doi.org/10.1088/1674-1056/27/7/070702]] 
  
-Magnetic cooling for microkelvin nanoelectronics on a cryofree platformMPalmaDMaradanLCasparisT.-M. Liu, F. N. M. Froning, D. M. Zumbühl, Review of Scientific Instruments 88 (2017043902, doi.org/10.1063/1.4979929+  * Design and expected performance of a compact and continuous nuclear demagnetization refrigerator for sub-mK applicationsRTodaSMurakawaHFukuyamaJournal of Physics: Conference Series 969 (2018012093[[https://doi.org/10.1088/1742-6596/969/1/012093]] 
  
-Sub-millikelvin station at Synergetic Extreme Condition User FacilityZGChengJFanXJingLLuChinese Physics B 27 (2018070702, doi.org/10.1088/1674-1056/27/7/070702+  * Development of a Sub-mK Continuous Nuclear Demagnetization RefrigeratorDSchmoranzer, RGazizulinSTriqueneauxECollinAFeffermanJournal of Low Temperature Physics 196 (2019261–267[[https://doi.org/10.1007/s10909-018-02128-9]] 
  
-Design and expected performance of compact and continuous nuclear demagnetization refrigerator for sub-mK applicationsRTodaSMurakawaHFukuyamaJournal of Physics: Conference Series 969 (2018012093, doi.org/10.1088/1742-6596/969/1/012093+  * Indium as High-Cooling-Power Nuclear Refrigerant for Quantum NanoelectronicsNYurttagülMSarsbyAGeresdiPhysical Review Applied 12 (2019011005[[https://doi.org/10.1103/PhysRevApplied.12.011005]] 
  
-Development of a Sub-mK Continuous Nuclear Demagnetization RefrigeratorDSchmoranzer, R. GazizulinSTriqueneauxECollinAFefferman, Journal of Low Temperature Physics 196 (2019261267, doi.org/10.1007/s10909-018-02128-9+  * Progress in Cooling Nanoelectronic Devices to Ultra-Low TemperaturesAT. JonesC. P. Scheller, J. R. PranceYB. KalyoncuD. MZumbühlR. PHaley, Journal of Low Temperature Physics 201 (2020772802[[https://doi.org/10.1007/s10909-020-02472-9]] 
  
-Indium as a High-Cooling-Power Nuclear Refrigerant for Quantum NanoelectronicsNYurttagülMSarsby, A. GeresdiPhysical Review Applied 12 (2019011005, doi.org/10.1103/PhysRevApplied.12.011005+  * Design evaluation of serial and parallel sub-mK continuous nuclear demagnetization refrigeratorsDSchmoranzerJButterworth, S. Triqueneaux, E. Collin, A. FeffermanCryogenics 110 (2020103119[[https://doi.org/10.1016/j.cryogenics.2020.103119]] 
  
-Progress in Cooling Nanoelectronic Devices to Ultra-Low Temperatures, A. T. Jones, C. P. Scheller, J. R. Prance, Y. B. Kalyoncu, D. M. Zumbühl, R. P. Haley, Journal of Low Temperature Physics 201 (2020) 772–802, doi.org/10.1007/s10909-020-02472-9+  * Progress in Cooling Nanoelectronic Devices to UltraLow Temperatures, A. T. Jones, C. P. Scheller, J. R. Prance, Y. B. Kalyoncu, D. M. Zumbühl, R. P. Haley, Journal of Low Temperature Physics201, pages772–802 (2020) (https://doi.org/10.1007/s10909-020-02472-9)
  
-Design evaluation of serial and parallel sub-mK continuous nuclear demagnetization refrigeratorsDSchmoranzer, J. ButterworthSTriqueneauxECollinAFeffermanCryogenics 110 (2020103119, doi.org/10.1016/j.cryogenics.2020.103119+  * Cryogen-free one hundred microkelvin refrigeratorJYan, J. YaoVShvartsR.-R. DuXLinReview of Scientific Instruments 92 (2021025120[[https://doi.org/10.1063/5.0036497]] 
  
-Cryogen-free one hundred microkelvin refrigeratorJYanJYaoVShvartsR.-R. DuX. Lin, Review of Scientific Instruments 92 (2021025120, doi.org/10.1063/5.0036497+  * Construction of Continuous Magnetic Cooling Apparatus with Zinc-Soldered PrNi5 Nuclear StagesSTakimotoRTodaSMurakawaHFukuyamaJournal of Low Temperature Physics 208 (2022492–500[[https://doi.org/10.1007/s10909-022-02801-0]] 
  
-Construction of Continuous Magnetic Cooling Apparatus with Zinc-Soldered PrNi5 Nuclear Stages, S. Takimoto, R. Toda, S. Murakawa, H. Fukuyama, Journal of Low Temperature Physics 208 (2022) 492–500, doi.org/10.1007/s10909-022-02801-0 
  
  
  
-==== Ultralow temperature refrigerators ==== 
- 
-  * The new Grenoble 100 microKelvin refrigerator, C. Bäuerle, Y. Bunkov, S.N. Fisher, Chr. Gianese and H. Godfrin, Proc. of the 21st. Int. Conf on Low Temp. Physics, Prague, August 8-14 1996, Czekoslovak J. of Phys. 46, suppl S5, 2791-2792, 1996 
-  * Cryogen free one hundred micro Kelvin refrigerator, Jiaojie Yan, Jianing Yao, Vladimir Shvarts, Rui Rui Du and Xi Lin, Rev. Sci. Instrum.92, 025120 (2021)  https://doi.org/10.1063/5.003649  https://arxiv.org/abs/2010.04472v2  
  
wiki/demag_papers.1668207738.txt.gz · Last modified: 2022/11/11 23:02 by henri.godfrin@neel.cnrs.fr