Диссертация (1145374), страница 35
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R. Plaß, C. Rauth, P. G. Thirolf, G. Vorobjev и Z. Wang, «Extraction efficiency andextraction time of the SHIPTRAP gas-filled stopping cell,» Nucl. Instr. Meth., pp. 479-484,258 2007.[79] S. Hofmann, «Proton Radioactivity,» Radiochim. Acta, pp. 93-105, 70/71 1995.[80] S. Hofmann и G. Münzenberg, «The discovery of the heaviest elements,» Rev. Mod. Phys., p.733, 72 2000.[81] A. V. Tolmachev, T. Kim, H. R. Udseth, R. D. Smith, T.
H. Bailey и J. H. Futrell,«Simulation-basedoptimization of the electrodynamic ion funnel for high sensitivityelectrospray ionization mass spectrometry,» Int. J. of Mass Spect., pp. 31-47, 203 2000.[82] D. Rodriguez, An RFQ buncher for accumulation and cooling of heavy radionuclides atSHIPTRAP and high precision mass measurements on unstable Kr isotopes at ISOLTRAP,PhD thesis, University of Valencia, 2003.[83] G. Sikler, Massenspektrometrie kurzlebiger Sr- und Sn-Isotope und Aufbau der SHIPTRAPPenningfallen, PhD thesis, Universität Heidelberg, 2003.[84] S. Rahaman, First on-line mass measurements at SHIPTRAP and mass determinations ofneutron-rich Fr and Ra isotopes at ISOLTRAP, PhD thesis, Universität Heidelberg, 2005.[85] G.
Savard, S. Becker, G. Bollen, H. -J. Kluge, R. B. Moore, T. Otto, L. Schweikhard, H.Stolzenberg и U. Wiess, «A new cooling technique for heavy ions in a Penning trap,» Phys.Lett. A, pp. 247-252, 158 1991.[86] M. Dworschak, M. Block, D. Ackermann, G. Audi, K. Blaum, C. Droese, S. Eliseev, T.Fleckenstein, E. Haettner, F. Herfurth, F. P. Heßberger, S. Hofmann, J. Ketelaer, J. Ketter, H.-J.
Kluge, G. Marx, M. Mazzocco, Y. N. Novikov, W. R. Plaß, A. Popeko, S. Rahaman, D.Rodriguez, C. Scheidenberger, L. Schweikhard, P. G. Thirolf, G. K. Vorobyev, M. Wang и C.234Weber, «Penning trap mass measurements on nobelium isotopes,» Phys. Rev. C, p. 064312,81 2010.[87] M. Block, D. Ackermann, K. Blaum, C. Droese, M. Dworschak, S. Eliseev, T. Fleckenstein,E. Haettner, F. Herfurth, F. P. Heßberger, S. Hofmann, J. Ketelaer, J. Ketter, H. -J. Kluge, G.Marx, M.
Mazzocco, Y. N. Novikov, W. R. Plaß, A. Popeko, S. Rahaman, D. Rodriguez, C.Scheidenberger, L. Schweikhard, P. G. Thirolf, G. K. Vorobyev и C. Weber, «Direct massmeasurements above uranium bridge the gap to the island of stability,» Nature, pp. 785-788,463 2010.[88] E. Minaya Ramirez, D. Ackermann, K.
Blaum, M. Block, C. Droese, C. E. Düllmann, M.Dworschak, M. Eibach, S. Eliseev, E. Haettner, F. Herfurth, F. P. Heßberger, S. Hofmann, J.Ketelaer, G. Marx, M. Mazzocco, D. Nesterenko, Y. N. Novikov, W. R. Plaß, D. Rodriguez,C. Scheidenberger, L. Schweikhard, P. G. Thirolf и C. Weber, «Direct Mapping of NuclearShell Effects in the Heaviest Elements,» Science, pp. 1207-1210, 337 2012.[89] Y. Oganessian, «Heaviest nuclei from 48Ca-induced reactions,» J. Phys. G, p.
34, R165 2007.[90] W. Reisdorf и M. Schädel, «How well do we understand the synthesis of heavy elements byheavy-ion induced fusion?,» Z. Phys. A, pp. 47-57, 343 1992.[91] H. W. Gäggeler, D. T. Jost, A. Türler, P. Armbruster, W. Brüchle, H. Folger, F. P. Heßberger,S. Hofmann, G. Münzenberg, V. Ninov, W.
Reisdorf, M. Schädel, K. Sümmerer, J. V. Kratz,U. Scherer и M. E. Leino, «Cold fusion reactions with 48Ca,» Nucl. Phys. A, pp. 561-570,502 1989.[92] A. V. Belozerov, M. L. Chelnokov, V. I. Chepigin, T. P. Drobina, V. A. Gorshkov, A. P.Kabachenko, O. N. Malyshev, I. M. Merkin, Y.
T. Oganessian, A. G. Popeko, R. N.Sagaidak, A. I. Svirikhin, A. V. Yeremin, G. Berek, I. Brida и S. Saro, «Spontaneous-fissiondecay properties and production cross-sections for the neutron-deficient nobelium isotopesformed in the 44,48Ca+204,206,208Pb reactions,» Eur. Phys. J. A, pp. 447-456, 16 2003.[93] F. P.
Heßberger, «GSI experiments on synthesis and nuclear structure investigations of theheaviest nuclei,» Eur. Phys. J. D, pp. 33-37, 45 2007.[94] M. Thoennessen, «Discovery of Isotopes of Elemenents with Z>100,» arXiv: 1203.2105[nucl.-ex], 2012.[95] G. Audi, A. H. Wapstra и C. Thibault, «The AME2003 atomic mass evaluation. (II). Tables,graphs and references,» Nucl. Phys. A, pp. 337-676, 729 2003.[96] M. Goeppert-Mayer, «Double Beta-Disintegration,» Phys.
Rev., pp. 512-516, 48 1935.[97] G. Racah, «Sulla Simmetria Tra Particelle e Antiparticelle,» Nuovo Cimento, pp. 322-328, 142351937.[98] W. H. Furry, «On Transition Probabilities in Double Beta-Disintegration,» Phys. Rev., pp.1184-1193, 56 1939.[99] A. S. Barabash, «75 years of double beta decay: yesterday, today and tomorrow,»arXiv:1101.4502v1 [nucl-ex], 2011.[100] A.
S. Barabash, «Precise half-life values for two-neutrino double-beta decay,» Phys. Rev. C,p. 035501, 81 2010.[101] F. T. Avignone III, S. R. Elliot и J. Engel, «Double beta decay, Majorana neutrinos, andneutrino mass,» Rev. Mod. Phys. , pp. 481-516, 80 2008.[102] J. J. Gomez-Cadenas, J. Martin-Albo, M. Mezzetto, F. Monrabal и M. Sorel, «The search forneutrinoless double beta decay,» arXiv: 1109.5515v2 [hep-ex], 2012.[103] S. P. Rosen и H. Primakoff, «In Alpha-, beta- and gamma-ray spectroscopy,» ed K Siegbahn(North-Holland PC), p. 1499, 1965.[104] R. G.
Winter, «Double K Capture and Single K Capture with Positron Emission,» Phys. Rev.,pp. 142-144, 100 1955.[105] M. B. Voloshin, G. V. Mitsel'makher и R. A. Eramzhyan, «Conversion of an atomic electroninto a positron and double beta+ decay,» JETP Lett., pp. 656-659, 35 1982.[106] H. M. Georgi, S.
L. Glashow и S. Nussinov, «Unconventional model of neutrino masses,»Nucl. Phys. B, pp. 297-316, 193 1981.[107] J. Bernabeu, A. De Rujula и C. Jarlskog, «Neutrinoless double electron capture as a tool tomeasure the electron neutrino mass,» Nucl. Phys. B, pp. 15-28, 223 1983.[108] V. I. Tretyak и Y. G. Zdesenko, «Tables of Double Beta Decay Data - an Update,» At.
Dataand Nucl. Data Tables, pp. 83-116, 80 2002.[109] K. Blaum, «High-accuracy mass spectrometry with stored ions,» Phys. Rep., pp. 1-78, 4252006.[110] K. Blaum, Y. N. Novikov и G. Werth, «Penning traps as a versatile tool for preciseexperiments in fundamental physics,» Contemp. Phys., pp. 149-175, 51 2010.[111] M. Doi и T. Kotani, «Neutrinoless Modes of Double Beta Decay,» Prog.
Theor. Phys., pp.139-159, 89 1993.[112] Z. Sujkowski и S. Wycech, «Neutrinoless double electron capture: A tool to search forMajorana neutrinos,» Phys. Rev. C, p. 052501, 70 2004.[113] J. D. Vergados, «Transition operators entering neutrinoless double electron capture to excited236nuclear states,» Phys. Rev. C, p. 044328, 84 2011.[114] C. H. Kom и W. Rodejohann, «Four-jet final state in same-sign lepton colliders andneutrinoless double beta decay mechanisms,» Phys.
Rev. D, p. 015013, 85 2012.[115] D. Frekers, «Nuclear-atomic state degeneracy in neutrinoless double-electron capture: Aunique test for a Majorana-neutrino,» arXiv: 0506002v2 [hep-ex], 2009.[116] J. D. Vergados, «The neutrinoless double beta decay from a modern perspective,» Phys. Rep.,pp. 1-56, 361 2002.[117] F. Simkovic, A. Faessler, H. Müther, V. Rodin и M.
Stauf, «0nubb-decay nuclear matrixelements with self-consistent short-range correlations,» Phys. Rev. C, p. 055501, 79 2009.[118] M. I. Krivoruchenko, F. Simkovic, D. Frekers и A. Faessler, «Resonance enhancement ofneutrinoless double electron capture,» Nucl. Phys. A, pp. 140-171, 859 2011.[119] J. Suhonen, «Neutrinoless double beta decays of 106Cd revisited,» Phys. Lett. B, pp. 490-495,701 2011.[120] E.
Caurier, G. Martinez-Pinedo, F. Nowacki, A. Poves и A. P. Zuker, «The shell model as aunified view of nuclear structure,» Rev. Mod. Phys., p. 427, 77 2005.[121] T. R. Rodriguez и G. Martinez-Pinedo, «Energy Density Functional Study of Nuclear MatrixElements for Neutrinoless bb Decay,» Phys. Rev. Lett., p. 252503, 105 2010.[122] S. R. Elliot и P.
Vogel, «Double Beta Decay,» Ann. Rev. Nucl. Part. Sci., pp. 115-151, 522002.[123] J. Barea и F. Iachello, «Neutrinoless double-beta decay in the microscopic interacting bosonmodel,» Phys. Rev. C, p. 044301, 79 2009.[124] C. Giunti и M. Laveder, «Short-baseline electron neutrino disappearance, tritium beta decay,and neutrinoless double-beta decay,» Phys. Rev. D, p. 053005, 82 2010.[125] I. I. Tupitsyn, L.
L. Makarov и J. F. Batrakov, «Sign of the spin-polarized effects in thechemical shifts of the X-ray Cu Ka1,2 emission transitions,» Phys. Chem. Solids, pp. 809817, 59 1998.[126] M. Agostini и et al., «2nubb decay of 76Ge into excited states with GERDA phase 1,» arXiv.:1506.03120 [hep-ex], 2015.[127] V. S.
Kolhinen, S. Kopecky, T. Eronen, U. Hager, J. Hakala, J. Huikari, A. Jokinen, A.Nieminen, S. Rinta-Antila, J. Szerypo и J. Äystö, «JYFLTRAP: a cylindrical Penning trap forisobaric beam purification at IGISOL,» Nucl. Instr. and Meth. A, pp. 776-787, 528 2004.[128] J. Ketelaer, J. Krämer, D. Beck, K. Blaum, M. Block, K. Eberhardt, G. Eitel, R. Ferrer, C.237Geppert, S.
George, F. Herfurth, J. Ketter, S. Nagy, D. Neidherr, R. Neugart, W.Nörtershäuser, J. Repp, C. Smorra, N. Trautmann и C. Weber, «TRIGA-SPEC: A setup formass spectrometry and laser spectroscopy at the research reactor TRIGA Mainz,» Nucl. Instr.and Meth. A, pp.
162-177, 594 2008.[129] W. Shi, M. Redshaw и E. G. Myers, «Atomic masses of S32,33, Kr84,86 and Xe129,132 withuncertainties <0.1 ppb,» Phys. Rev. A, p. 022510, 72 2005.[130] A. Chaudhuri, M. Block, S. Eliseev, R. Ferrer, F. Herfurth, A. Martin, G. Marx, M.Mukherjee, C. Rauth, L. Schweikhard и G. Vorobjev, «Carbon-cluster mass calibration atSHIPTRAP,» Eur.