The NEXT Project: Towards Production and Investigation of Neutron-Rich Heavy Nuclides
暂无分享,去创建一个
A. Karpov | L. Schweikhard | F. Wienholtz | J. Even | J. Uusitalo | J. Sarén | T. Schlathölter | P. Fischer | V. Saiko | Xiangcheng Chen | Arif Soylu | Moritz Schlaich | J. Sarén | M. Schlaich
[1] X. Chen,et al. Stacked-ring ion guide for cooling and bunching rare isotopes , 2022, International Journal of Mass Spectrometry.
[2] J. Lawler,et al. Origin of the heaviest elements: The rapid neutron-capture process , 2019, Reviews of Modern Physics.
[3] D. Nichita,et al. Multi-nucleon transfer reactions at ion catcher facilities - a new way to produce and study heavy neutron-rich nuclei , 2020, Journal of Physics: Conference Series.
[4] A. Yeremin,et al. New studies and a short review of heavy neutron-rich transfer products , 2020, The European Physical Journal A.
[5] M. Brodeur,et al. The N = 126 factory: A new facility to produce very heavy neutron-rich isotopes , 2020 .
[6] N. Kalantar-Nayestanaki,et al. A setup to develop novel Chemical Isobaric SEparation (CISE) , 2020, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.
[7] D. Nichita,et al. Production of Exotic Nuclei via MNT Reactions Using Gas Cells , 2020 .
[8] A. Karpov,et al. Synthesis of Transuranium Nuclei in Multinucleon Transfer Reactions at Near-Barrier Energies , 2019, Physics of Particles and Nuclei Letters.
[9] W. Loveland. The Synthesis of New Neutron-Rich Heavy Nuclei , 2019, Front. Phys..
[10] L. Schweikhard,et al. In-depth study of in-trap high-resolution mass separation by transversal ion ejection from a multi-reflection time-of-flight device. , 2018, The Review of scientific instruments.
[11] L. Schweikhard,et al. Mass-selective ion ejection from multi-reflection time-of-flight devices via a pulsed in-trap lift , 2017 .
[12] A. Karpov,et al. Production of neutron-rich nuclides in the vicinity of N = 126 shell closure in multinucleon transfer reactions , 2017 .
[13] W. Greiner,et al. Cross sections for the production of superheavy nuclei , 2015 .
[14] W. Loveland,et al. Syntheses of transuranium isotopes with atomic numbers Z ≤ 103 in multi-nucleon transfer reactions , 2015 .
[15] A. Görgen,et al. Light and heavy transfer products in 136 Xe + 238 U multinucleon transfer reactions , 2015 .
[16] S. Choi,et al. Study of collisions of 136Xe + 198Pt for the KEK isotope separator , 2013 .
[17] C. Ur,et al. Multinucleon transfer reactions: Present status and perspectives , 2013 .
[18] V. Manea,et al. ISOLTRAP's multi-reflection time-of-flight mass separator/spectrometer , 2013 .
[19] D. Lunney,et al. Masses of exotic calcium isotopes pin down nuclear forces , 2013, Nature.
[20] A. Türler,et al. Advances in the production and chemistry of the heaviest elements. , 2013, Chemical reviews.
[21] Lutz Schweikhard,et al. Static-mirror ion capture and time focusing for electrostatic ion-beam traps and multi-reflection time-of-flight mass analyzers by use of an in-trap potential lift , 2012 .
[22] M. Block,et al. IRiS—Exploring new frontiers in neutron-rich isotopes of the heaviest elements with a new Inelastic Reaction Isotope Separator , 2011 .
[23] S. Brandenburg,et al. Beam loss monitoring and control for high intensity beams at the AGOR-facility , 2011 .
[24] G. de France,et al. Investigation of deep inelastic reactions in 238U + 238U at Coulomb barrier energies , 2010 .
[25] S. Brandenburg,et al. The irradiation facility at the AGOR cyclotron , 2007 .
[26] K. Shima,et al. Empirical formula for the average equilibrium charge-state of heavy ions behind various foils , 1982 .
[27] I. S. Dmitriev,et al. On the equilibrium charge distribution in heavy element ion beams , 1968 .