PUMA, antiProton unstable matter annihilation
暂无分享,去创建一个
G. Neyens | Neepa Paul | A. Hobl | F. Butin | D. Calvet | T. Dobers | W. Bartmann | O. Boine-Frankenheim | P. Chiggiato | J. Grenard | L. Schweikhard | M. Fraser | P. Indelicato | R. Seki | N. Marsic | R. Lazauskas | J. Carbonell | M. Gómez-Ramos | S. Naimi | F. Wienholtz | M. Vilén | Y. Kubota | D. Neidherr | T. Aumann | M. Wada | T. Uesaka | S. Malbrunot-Ettenauer | K. Johnston | M. Schlaich | G. Hupin | D. Rossi | E. Pollacco | A. Obertelli | H. Scheit | N. Nakatsuka | E. Friedrich | A. Frotscher | S. Sels | S. Wycech | A. Husson | S. Pasinelli | A. Bouvard | A. Broche | H. De Gersem | R. De Oliveira | F. Ehm | J. F. Somoza | J. Fischer | C. Klink | W. F. O Müller | R. Necca | Y. Ono | A. Schmidt | E. Siesling | S. Zacarias
[1] K. Mahata,et al. Unveiling the two-proton halo character of 17Ne: Exclusive measurement of quasi-free proton-knockout reactions , 2021, Physics Letters B.
[2] R. Lazauskas,et al. Antiproton-deuteron hydrogenic states in optical models , 2021, 2108.01630.
[3] H. Hergert. A Guided Tour of ab initio Nuclear Many-Body Theory , 2020, Frontiers in Physics.
[4] J. P. Ramos,et al. The electron affinity of astatine , 2020, Nature Communications.
[5] H. Heylen,et al. First steps in the development of the Multi Ion Reflection Apparatus for Collinear Laser Spectroscopy , 2020 .
[6] L. Schweikhard,et al. A multi-reflection time-of-flight setup for the improvement and development of new methods and the study of atomic clusters , 2019, International Journal of Mass Spectrometry.
[7] L. Schweikhard,et al. Photofragmentation of Bin+/- clusters (n = 2−19) in an electrostatic ion beam trap , 2019, The European Physical Journal D.
[8] H. Heylen,et al. Simulations of a proof-of-principle experiment for collinear laser spectroscopy within a multi-reflection time-of-flight device , 2019, Hyperfine Interactions.
[9] P. Schmidt,et al. Closed-cycle, low-vibration 4 K cryostat for ion traps and other applications. , 2019, The Review of scientific instruments.
[10] A. Giganon,et al. Tracking with the MINOS Time Projection Chamber , 2018, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment.
[11] T. Mohamed. Compression features of high density electron plasma in a long harmonic trap using a rotating wall technique , 2018, Physics Letters A.
[12] F. Sorrentino,et al. Compression of a mixed antiproton and electron non-neutral plasma to high densities , 2018, The European Physical Journal D.
[13] G. A. Korolev,et al. Halo structure of $^8$B determined from intermediate energy proton elastic scattering in inverse kinematics , 2018, 1803.02044.
[14] 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.
[15] H. Himura. Recent experiments with lithium ion and electron plasmas in the BX-U linear trap , 2018 .
[16] K. Blaum,et al. Sympathetic cooling of protons and antiprotons with a common endcap Penning trap , 2017, 1709.00433.
[17] K. Blaum,et al. Focus on Exotic Beams at ISOLDE: A Laboratory Portrait , 2018 .
[18] L. Schweikhard,et al. Multi-reflection time-of-flight mass spectrometry with combined in-trap lift capture and mirror-switch ejection , 2017 .
[19] T. Stora,et al. Production of negatively charged radioactive ion beams , 2017 .
[20] T. Stora,et al. The ISOLDE facility , 2017 .
[21] B. Jonson,et al. ISOLDE past, present and future , 2017 .
[22] M. A. Cortés-Giraldo,et al. On the role of secondary pions in spallation targets , 2016, The European Physical Journal A.
[23] W. Nazarewicz,et al. Neutron and weak-charge distributions of the 48Ca nucleus , 2015, Nature Physics.
[24] Sofia Quaglioni,et al. Unified ab initio approaches to nuclear structure and reactions , 2016, 1601.03765.
[25] K. Blaum,et al. A reservoir trap for antiprotons , 2015, 1507.04147.
[26] U. Bergner,et al. Vakuumkomponenten für UHV und XHV aus Aluminium , 2015 .
[27] D. L. Lincoln,et al. Fabrication and characterization of field emission points for ion production in Penning trap applications , 2015 .
[28] A. Giganon,et al. MINOS: A vertex tracker coupled to a thick liquid-hydrogen target for in-beam spectroscopy of exotic nuclei , 2014 .
[29] G. Röpke,et al. Effects of the liquid-gas phase transition and cluster formation on the symmetry energy , 2013, 1309.6934.
[30] V. Manea,et al. ISOLTRAP's multi-reflection time-of-flight mass separator/spectrometer , 2013 .
[31] I. Tanihata,et al. Recent experimental progress in nuclear halo structure studies , 2013 .
[32] T. Frederico,et al. Universal aspects of light halo nuclei , 2012 .
[33] L. Schweikhard,et al. A new Pulse-Pattern Generator based on LabVIEW FPGA , 2012 .
[34] W. Fietz,et al. Determination of mechanical and thermal properties of electrical insulation material at 4.2 K , 2012 .
[35] 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 .
[36] B. A. Tatum,et al. ISOL science at the Holifield Radioactive Ion Beam Facility , 2011 .
[37] Alexander Herlert,et al. The ISOLDE Facility , 2010 .
[38] P. Vingerhoets,et al. An ion cooler-buncher for high-sensitivity collinear laser spectroscopy at ISOLDE , 2009 .
[39] G. Bollen,et al. The LEBIT 9.4 T Penning trap mass spectrometer , 2009 .
[40] D. Lunney,et al. COLETTE: A linear Paul-trap beam cooler for the on-line mass spectrometer MISTRAL , 2009 .
[41] Christophe Geuzaine,et al. Gmsh: A 3‐D finite element mesh generator with built‐in pre‐ and post‐processing facilities , 2009 .
[42] R. Nevshupa,et al. Origin of hydrogen desorption during friction of stainless steel by alumina in ultrahigh vacuum , 2008 .
[43] K. Blaum,et al. Mass measurements and evaluation around A = 22 , 2008 .
[44] K. Rashid,et al. X-ray transitions from antiprotonic noble gases , 2008, 0801.3405.
[45] K. Jousten,et al. Handbook of vacuum technology , 2008 .
[46] E. A. Hessels,et al. ATRAP antihydrogen experiments , 2007 .
[47] E. A. Hessels,et al. Density and geometry of single component plasmas , 2007 .
[48] G. Zwicknagel. Electron Cooling of Highly Charged Ions in Penning Traps , 2006 .
[49] J. Stone,et al. The Skyrme interaction in finite nuclei and nuclear matter , 2006, nucl-th/0607002.
[50] C. Canali,et al. Centrifugal separation of ions and an oppositely charged non-neutral plasma , 2006 .
[51] S. Wycech. Nuclear structure studies with low energy p̄ , 2005 .
[52] M. Wada,et al. Antiprotonic Radioactive Atom for Nuclear Structure Studies , 2005 .
[53] A. Woodcraft. Predicting the thermal conductivity of aluminium alloys in the cryogenic to room temperature range , 2005 .
[54] D. Lunney,et al. Preparation of cooled and bunched ion beams at ISOLDE-CERN , 2005 .
[55] J. Mares,et al. Antiproton-nucleus potentials from global fits to antiprotonic X-rays and radiochemical data , 2005, nucl-th/0504030.
[56] F. Dunning,et al. Selective removal of electrons from a Penning trap for negative ion autodetachment studies , 2005 .
[57] G. Werth,et al. Electron and positron cooling of highly charged ions in a cooler Penning trap , 2004 .
[58] M. Iwasaki,et al. Kaonic nitrogen X-ray transition yields in a gaseous target , 2004 .
[59] B. Jonson. Light dripline nuclei , 2004 .
[60] Alessandro Variola,et al. The ATHENA antihydrogen apparatus , 2004 .
[61] M. Dixit,et al. Position Sensing from Charge Dispersion in Micro-Pattern Gas Detectors with a Resistive Anode , 2003, physics/0307152.
[62] Yasunori Yamazaki,et al. Technical developments toward antiprotonic atoms for nuclear structure studies of radioactive nuclei , 2004 .
[63] M. Macrì,et al. Complete nondestructive diagnostic of nonneutral plasmas based on the detection of electrostatic modes , 2003 .
[64] C. Driscoll,et al. Confinement and manipulation of non-neutral plasmas using rotating wall electric fields , 2000 .
[65] M. Zhukov. Nuclear halos , 2000 .
[66] Y. Hahn. Electron - ion recombination processes - an overview , 1997 .
[67] E. Wallén. Adsorption isotherms of He and H2 at liquid He temperatures , 1997 .
[68] E. Wallén. Adsorption isotherms of H2 and mixtures of H2, CH4, CO and CO2 on copper plated stainless steel at 4.2 K and the large hadron collider vacuum system , 1996 .
[69] G. Charpak,et al. MICROMEGAS: a high-granularity position-sensitive gaseous detector for high particle-flux environments , 1996 .
[70] H. Ishimaru,et al. Influence of vacuum gauges on outgassing rate measurements , 1993 .
[71] G. W. Hart. The effect of a tilted magnetic field on the equilibrium of a pure electron plasma , 1991 .
[72] J. D. Garcia,et al. Classical-quantal coupling in the capture of muons by hydrogen atoms , 1989 .
[73] T. Kobayashi,et al. Measurement of interaction cross sections using isotope beams of Be and B and isospin dependence of the nuclear radii , 1988 .
[74] W. Kells,et al. Antihydrogen production using trapped plasmas , 1988 .
[75] Björn Jonson,et al. The Neutron Halo of Extremely Neutron-Rich Nuclei , 1987 .
[76] W. Weise,et al. Proton-antiproton scattering and annihilation into two mesons☆ , 1986 .
[77] A. Schlachter. Formation of negative ions by charge transfer: He/sup -/ to Cl/sup -/ , 1983 .
[78] R. Callies,et al. Detection of muonic Auger electron lines from silver , 1982 .
[79] S. Orfanidis,et al. Nucleon-antinucleon annihilation into pions , 1973 .
[80] C. Benvenuti,et al. The desorption of condensed hydrogen from various substrates by infrared thermal radiation , 1971 .
[81] A. V. Crewe,et al. Electron Gun Using a Field Emission Source , 1968 .
[82] Condensation pumping of hydrogen and deuterium on to liquid-helium-cooled surfaces , 1968 .
[83] M. Dubinin,et al. Adsorption in micropores , 1967 .
[84] T. Trueman. Energy level shifts in atomic states of strongly-interacting particles , 1961 .
[85] A. W. Trivelpiece,et al. Space Charge Waves in Cylindrical Plasma Columns , 1959 .
[86] E. Teller,et al. ADSORPTION OF GASES IN MULTIMOLECULAR LAYERS , 1938 .