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NSR database version of April 27, 2024.

Search: Author = M.Simon

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2023BO14      Bull.Rus.Acad.Sci.Phys. 87, 863 (2023)

E.A.Bogomolov, G.I.Vasilyev, W.Menn, O.Adriani, G.A.Bazilevskaya, G.C.Barbarino, R.Bellotti, M.Boezio, V.Bonvicini, M.Bongi, S.Bottai, A.Bruno, A.Vacchi, E.Vannuccini, S.A.Voronov, A.M.Galper, C.De Santis, V.Di Felice, G.Zampa, N.Zampa, M.Casolino, D.Campana, P.Carlson, G.Castellini, F.Cafagna, A.A.Kvashnin, A.N.Kvashnin, S.A.Koldobskiy, I.A.Lagoida, A.A.Leonov, A.G.Mayorov, V.V.Malakhov, M.Martucci, L.Marcelli, M.Merge, V.V.Mikhailov, E.Mocchiutti, A.Monaco, N.Mori, R.Munini, G.Osteria, B.Panico, P.Papini, P.Picozza, M.Ricci, S.B.Ricciarini, M.Simon, R.Sparvoli, P.Spillantini, Y.I.Stozhkov, Y.T.Yurkin

Lithium and Beryllium Isotopes in the PAMELA Experiment

doi: 10.3103/S1062873823702374
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2023ZI02      Phys.Rev. A 108, 053113 (2023)

M.Zitnik, M.Hrast, A.Mihelic, K.Bucar, J.Turnsek, R.Puttner, G.Goldsztejn, T.Marchenko, R.Guillemin, L.Journel, O.Travnikova, I.Ismail, M.N.Piancastelli, M.Simon, D.Ceolin, M.Kavcic

Auger decay of 1S-13p-1nln'l' doubly excited states in Ar

NUCLEAR REACTIONS Ar(γ, e-), E=3-3.3 keV; measured X-rays, Eβ, Iβ; deduced Auger electron yields, σ(θ). Comparison with calculations.

doi: 10.1103/PhysRevA.108.053113
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2020KO13      Phys.Rev.Lett. 124, 183001 (2020)

S.Kosugi, F.Koike, M.Iizawa, M.Oura, T.Gejo, K.Tamasaku, J.R.Harries, R.Guillemin, M.N.Piancastelli, M.Simon, Y.Azuma

Fluorescence Time Delay in Multistep Auger Decay as an Internal Clock

NUCLEAR REACTIONS Si(γ, e-), E=14.2-14.4 keV; analayzed available data on Eβ, Iβ; deduced Auger electron spectra, time delay due to fluorescence, a reduced shift of the Auger peak and tailing toward lower energy. Time-dependent theory for post collision interaction (PCI) effects.

doi: 10.1103/PhysRevLett.124.183001
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2020PU03      Phys.Rev. A 102, 052832 (2020)

R.Puttner, P.Holzhey, M.Hrast, M.Zitnik, G.Goldsztejn, T.Marchenko, R.Guillemin, L.Journel, D.Koulentianos, O.Travnikova, M.Zmerli, D.Ceolin, Y.Azuma, S.Kosugi, A.F.Lago, M.N.Piancastelli, M.Simon

Argon KLL Auger spectrum: Initial states, core-hole lifetimes, shake, and knock-down processes

ATOMIC PHYSICS Ar; measured Eβ, Iβ; deduced KLL Auger spectrum, transitions, lifetimes. Comparison with available data.

doi: 10.1103/PhysRevA.102.052832
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2017GO09      Phys.Rev. A 96, 012513 (2017)

G.Goldsztejn, R.Puttner, L.Journel, R.Guillemin, O.Travnikova, B.Cunha de Miranda, I.Ismail, S.Carniato, P.Selles, D.Ceolin, A.F.Lago, R.Feifel, P.Lablanquie, F.Penent, M.N.Piancastelli, M.Simon, T.Marchenko

Experimental and theoretical study of the double-core-hole hypersatellite Auger spectrum of Ne

NUCLEAR REACTIONS Ne(γ, X), E=2.3 KeV; measured reaction products, Eβ, Iβ; deduced the hypersatellite Auger spectrum of neon which contains decay transitions, the ratio for the double to single ionization yield. Comparison with theoretical calculations.

doi: 10.1103/PhysRevA.96.012513
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2016KL04      Phys.Rev. C 93, 045807 (2016)

R.Klawitter, A.Bader, M.Brodeur, U.Chowdhury, A.Chaudhuri, J.Fallis, A.T.Gallant, A.Grossheim, A.A.Kwiatkowski, D.Lascar, K.G.Leach, A.Lennarz, T.D.Macdonald, J.Pearkes, S.Seeraji, M.C.Simon, V.V.Simon, B.E.Schultz, J.Dilling

Mass measurements of neutron-rich Rb and Sr isotopes

ATOMIC MASSES 98,99,100Rb, 98,99,100,101Sr; measured cyclotron frequency using the time-of-flight ion-cyclotron-resonance technique (TOF-ICR) using TITAN Penning-trap mass spectrometer at ISAC-TRIUMF; deduced mass excesses. Comparison with previous measurements and AME-2012 evaluation. Rb and Sr ions produced in U(p, F), E=480 MeV reaction and separated by a dipole magnet.

doi: 10.1103/PhysRevC.93.045807
Citations: PlumX Metrics


2016ZI01      Phys.Rev. A 93, 021401(R) (2016)

M.Zitnik, R.Puttner, G.Goldsztejn, K.Bucar, M.Kavcic, A.Mihelic, T.Marchenko, R.Guillemin, L.Journel, O.Travnikova, D.Ceolin, M.N.Piancastelli, M.Simon

Two-to-one Auger decay of a double L vacancy in argon

ATOMIC PHYSICS Ar; measured decay products, Eβ, Iβ; deduced two-electron one-electron (TEOE) transitions, Auger decay in argon where a double vacancy is filled by two valence electrons and a single electron is ejected from the atom.

doi: 10.1103/PhysRevA.93.021401
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2015KW01      Phys.Rev. C 92, 061301 (2015)

A.A.Kwiatkowski, C.Andreoiu, J.C.Bale, A.Chaudhuri, U.Chowdhury, S.Malbrunot-Ettenauer, A.T.Gallant, A.Grossheim, G.Gwinner, A.Lennarz, T.D.Macdonald, T.J.M.Rauch, B.E.Schultz, S.Seeraji, M.C.Simon, V.V.Simon, D.Lunney, A.Poves, J.Dilling

Observation of a crossover of S2n in the island of inversion from precision mass spectrometry

ATOMIC MASSES 27,29,30,31,32,33,34Al; measured TOF-ICR resonance, mass excess using Ion Trap for Atomic and Nuclear science (TITAN) Penning-trap facility at TRIUMF. Comparison with AME-2012, and previous experimental values. Systematics of S(2n) values for 28,29,30,31,32,33,34,35,36,37Mg, 29,30,31,32,33,34,35,36,37,38Al, comparison of experimental and theoretical values; deduced crossover at N=21 in the island of inversion. Large-scale shell-model calculations.

doi: 10.1103/PhysRevC.92.061301
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2015MA30      Phys.Rev. C 91, 045504 (2015)

S.Malbrunot-Ettenauer, T.Brunner, U.Chowdhury, A.T.Gallant, V.V.Simon, M.Brodeur, A.Chaudhuri, E.Mane, M.C.Simon, C.Andreoiu, G.Audi, J.R.C.Lopez-Urrutia, P.Delheij, G.Gwinner, A.Lapierre, D.Lunney, M.R.Pearson, R.Ringle, J.Ullrich, J.Dilling

Penning trap mass measurements utilizing highly charged ions as a path to benchmark isospin-symmetry breaking corrections in 74Rb

ATOMIC MASSES 74Ga, 74,75,76,85,87Rb; measured cyclotron frequency ratios of Rb isotopes in q=8-12 charge states relative to that of 85Rb using TITAN at TRIUMF-ISAC facility; deduced mass excesses and compared to previous experimental data.

RADIOACTIVITY 74Rb(EC); deduced Q value and logft using mass excess from current and previous studies. Systematics of superallowed β decays of 42Sc, 46V, 50Mn, 54Co, 62Ga, 74Rb. Discussed test of the isospin-symmetry correction term δC.

NUCLEAR REACTIONS Nb(p, X)74Rb/75Rb/76Rb/78Rb/74Ga, E=500 MeV; measured yields, TOF ion-cyclotron resonances for highly-charged Rb isotopes, TOF of ions with reference to highly-charged 85Rb isotope using TITAN at TRIUMF-ISAC facility.

doi: 10.1103/PhysRevC.91.045504
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2014KW01      Hyperfine Interactions 225, 143 (2014)

A.A.Kwiatkowski, C.Andreoiu, J.C.Bale, T.Brunner, A.Chaudhuri, U.Chowdhury, P.Delheij, S.Ettenauer, D.Frekers, A.T.Gallant, A.Grossheim, G.Gwinner, F.Jang, A.Lennarz, T.Ma, E.Mane, M.R.Pearson, B.E.Schultz, M.C.Simon, V.V.Simon, J.Dilling

TITAN: An ion trap facility for on-line mass measurement experiments

doi: 10.1007/s10751-013-0892-8
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2014KW04      Phys.Rev. C 89, 045502 (2014)

A.A.Kwiatkowski, T.Brunner, J.D.Holt, A.Chaudhuri, U.Chowdhury, M.Eibach, J.Engel, A.T.Gallant, A.Grossheim, M.Horoi, A.Lennarz, T.D.Macdonald, M.R.Pearson, B.E.Schultz, M.C.Simon, R.A.Senkov, V.V.Simon, K.Zuber, J.Dilling

New determination of double-β-decay properties on 48Ca High-precision Qββ-value measurement and improved nuclear matrix element calculations

ATOMIC MASSES 48Ca, 48Ti; measured cyclotron-frequencies, resonances using TITAN system consisting of radio frequency quadrupole (RFQ) beam cooler and buncher, an electron beam ion trap (EBIT), and a Penning trap (MPET) at ISAC-TRIUMF facility; deduced Q value for double β decay of 48Ti. Comparison with previous measurements and atomic mass evaluations (AME-2003 and AME-2012).

RADIOACTIVITY 48Ca(2β-); measured precise Q-value using TITAN system at ISAC-TRIUMF facility; calculated ββ nuclear matrix element by including effects of levels outside the valence space in a shell-model; discussed case for a new experiment on double-beta decay of 48Ca.

doi: 10.1103/PhysRevC.89.045502
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2014LE02      Hyperfine Interactions 225, 157 (2014)

A.Lennarz, T.Brunner, C.Andreoiu, A.Chaudhuri, U.Chowdhury, P.Delheij, J.Dilling, S.Ettenauer, D.Frekers, A.T.Gallant, A.Grossheim, F.Jang, A.A.Kwiatkowski, T.Ma, E.Mane, M.R.Pearson, B.E.Schultz, M.C.Simon, V.V.Simon

Electron-capture branching ratio measurements of odd-odd intermediate nuclei in double-beta decay at the TITAN facility

RADIOACTIVITY 116In(β-), (EC); measured decay products, Eγ, Iγ, X-rays; deduced isomers, energy levels, J, π. Comparison with available data.

doi: 10.1007/s10751-013-0893-7
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2014LE20      Phys.Rev.Lett. 113, 082502 (2014)

A.Lennarz, A.Grossheim, K.G.Leach, M.Alanssari, T.Brunner, A.Chaudhuri, U.Chowdhury, J.R.C.Lopez-Urrutia, A.T.Gallant, M.Holl, A.A.Kwiatkowski, J.Lassen, T.D.Macdonald, B.E.Schultz, S.Seeraji, M.C.Simon, C.Andreoiu, J.Dilling, D.Frekers

In-Trap Spectroscopy of Charge-Bred Radioactive Ions

RADIOACTIVITY 124In(β-), 124Cs(EC); measured decay products, Eγ, Iγ, X-rays; deduced isomer yields, T1/2, γ-ray energies, branching ratios. Electron-beam ion trap of the TITAN facility at TRIUMF.

doi: 10.1103/PhysRevLett.113.082502
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2014MA21      Phys.Rev. C 89, 044318 (2014)

T.D.Macdonald, B.E.Schultz, J.C.Bale, A.Chaudhuri, U.Chowdhury, D.Frekers, A.T.Gallant, A.Grossheim, A.A.Kwiatkowski, A.Lennarz, M.C.Simon, V.V.Simon, J.Dilling

Precision Penning-trap measurement to investigate the role of the51Cr (e-, νe) 51V Q value in the gallium anomaly

ATOMIC MASSES 51Cr, 51V; measured cyclotron-frequencies, TOF-ICR resonances using TITAN system consisting of radio frequency quadrupole (RFQ) beam cooler and buncher, an electron beam ion trap (EBIT), and a Penning trap (MPET) at ISAC-TRIUMF facility; deduced Q value for EC decay of 51Cr. Comparison with AME-2012 evaluation. Relevance to solar neutrino experiments SAGE and GALLEX.

RADIOACTIVITY 51Cr(EC); measured precise Q(EC) value using TITAN system for precise mass measurements at ISAC-TRIUMF facility.

doi: 10.1103/PhysRevC.89.044318
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2013BR16      Eur.Phys.J. A 49, 142 (2013)

T.Brunner, A.Lapierre, C.Andreoiu, M.Brodeur, P.Delheij, S.Ettenauer, D.Frekers, A.T.Gallant, R.Gernhauser, A.Grossheim, R.Krucken, A.Lennarz, D.Lunney, D.Mucher, R.Ringle, M.C.Simon, V.V.Simon, S.K.L.Sjue, K.Zuber, J.Dilling

Trapped-ion decay spectroscopy towards the determination of ground-state components of double-beta decay matrix elements

RADIOACTIVITY 124,125,126Cs(EC), (β+), (IT); measured Eγ, Iγ, X-ray. Method test experiment for possible determination of 2β matrix elements.

doi: 10.1140/epja/i2013-13142-4
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2013CH49      Phys.Rev. C 88, 054317 (2013)

A.Chaudhuri, C.Andreoiu, T.Brunner, U.Chowdhury, S.Ettenauer, A.T.Gallant, G.Gwinner, A.A.Kwiatkowski, A.Lennarz, D.Lunney, T.D.Macdonald, B.E.Schultz, M.C.Simon, V.V.Simon, J.Dilling

Evidence for the extinction of the N=20 neutron-shell closure for 32Mg from direct mass measurements

ATOMIC MASSES 29,30,31Na, 30,31,32,33,34Mg; measured Time-of-flight (TOF) ion-cyclotron resonances using TITAN Penning trap at ISAC-TRIUMF with respect to 16O and 39K references. Comparison with previous experimental data and with AME evaluations. Systematics of S(2n) values for N=18-24 Na and Mg isotopes; and experimental and theoretical neutron shell gap N=20, Z=10-22 nuclei. Discussed magicity of N=20 shell closure.

doi: 10.1103/PhysRevC.88.054317
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2013FR13      Phys.Lett. B 722, 233 (2013)

D.Frekers, M.C.Simon, C.Andreoiu, J.C.Bale, M.Brodeur, T.Brunner, A.Chaudhuri, U.Chowdhury, J.R.C.Lopez-Urrutia, P.Delheij, H.Ejiri, S.Ettenauer, A.T.Gallant, V.Gavrin, A.Grossheim, M.N.Harakeh, F.Jang, A.A.Kwiatkowski, J.Lassen, A.Lennarz, M.Luichtl, T.Ma, T.D.Macdonald, E.Mane, D.Robertson, B.E.Schultz, V.V.Simon, A.Teigelhofer, J.Dilling

Penning-trap Q-value determination of the 71Ga(ν, e-)71Ge reaction using threshold charge breeding of on-line produced isotopes

ATOMIC MASSES 71Ga, 71Ge; measured TOF, TOF-ICR, ion cyclotron resonance spectra; deduced Q-value and its uncertainty. TITAN Penning trap at ISAC/TRIUMF, comparison with AME data.

doi: 10.1016/j.physletb.2013.04.019
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2013KW01      Ann.Phys.(Leipzig) 525, 529 (2013)

A.A.Kwiatkowski, A.Chaudhuri, U.Chowdhury, A.T.Gallant, T.D.Macdonald, B.E.Schultz, M.C.Simon, J.Dilling

Mass measurements of singly and highly charged radioactive ions at TITAN: A new QEC-value measurement of 10C

NUCLEAR REACTIONS Ni, O(p, X)10C/10B, E=500 MeV; measured reaction products; deduced yields.

ATOMIC MASSES 10C, 10B, 74Rb; measured cyclotron frequency ratio; deduced Q-value. Comparison with available data.

doi: 10.1002/andp.201300039
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2012GA15      Phys.Rev. C 85, 044311 (2012)

A.T.Gallant, M.Brodeur, T.Brunner, U.Chowdhury, S.Ettenauer, V.V.Simon, E.Mane, M.C.Simon, C.Andreoiu, P.Delheij, G.Gwinner, M.R.Pearson, R.Ringle, J.Dilling

Highly charged ions in Penning traps: A new tool for resolving low-lying isomeric states

ATOMIC MASSES 78,78mRb; measured time-of-flight spectra, frequency ratios relative to 85Rb using TRIUMF-TITAN facility; deduced mass excess of ground state and isomer in 78Rb. Comparison with AME-2003 and ENSDF.

doi: 10.1103/PhysRevC.85.044311
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2012GA29      Phys.Rev.Lett. 109, 032506 (2012)

A.T.Gallant, J.C.Bale, T.Brunner, U.Chowdhury, S.Ettenauer, A.Lennarz, D.Robertson, V.V.Simon, A.Chaudhuri, J.D.Holt, A.A.Kwiatkowski, E.Mane, J.Menendez, B.E.Schultz, M.C.Simon, C.Andreoiu, P.Delheij, M.R.Pearson, H.Savajols, A.Schwenk, J.Dilling

New Precision Mass Measurements of Neutron-Rich Calcium and Potassium Isotopes and Three-Nucleon Forces

ATOMIC MASSES 51,52Ca, 51K; measured TOF-ICR resonances, average frequency ratios; deduced masses. Comparison with available data. TRIUMF TITAN trap, comparison with available data, KB3G and GXPF1A effective interactions.

doi: 10.1103/PhysRevLett.109.032506
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2012SI10      Phys.Rev. C 85, 064308 (2012)

V.V.Simon, T.Brunner, U.Chowdhury, B.Eberhardt, S.Ettenauer, A.T.Gallant, E.Mane, M.C.Simon, P.Delheij, M.R.Pearson, G.Audi, G.Gwinner, D.Lunney, H.Schatz, J.Dilling

Penning-trap mass spectrometry of highly charged, neutron-rich Rb and Sr isotopes in the vicinity of A ≈ 100

ATOMIC MASSES 94,97,98Rb, 94,97,98,99Sr; measured time-of-flight and cyclotron frequencies using (TOF-ICR) method with the Penning-trap mass spectrometer TITAN at TRIUMF-ISAC facility; deduced mass excesses. Frequencies ratios measured with reference to 85Rb. Z=36-44, N=55-65; systematics of S(2n) values. Calculated r process abundances as a function of mass number. Discussed astrophysical implications. Comparisons with previous measurements and AME-2003 evaluation.

doi: 10.1103/PhysRevC.85.064308
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2011ET01      Phys.Rev.Lett. 107, 272501 (2011)

S.Ettenauer, M.C.Simon, A.T.Gallant, T.Brunner, U.Chowdhury, V.V.Simon, M.Brodeur, A.Chaudhuri, E.Mane, C.Andreoiu, G.Audi, J.R.C.Lopez-Urrutia, P.Delheij, G.Gwinner, A.Lapierre, D.Lunney, M.R.Pearson, R.Ringle, J.Ullrich, J.Dilling

First Use of High Charge States for Mass Measurements of Short-Lived Nuclides in a Penning Trap

ATOMIC MASSES 74,75,76Rb, 74Ga; measured TOF ion-cyclotron resonances; deduced masses. Penning trap measurements, comparison with mass evaluation.

doi: 10.1103/PhysRevLett.107.272501
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2007HA05      Phys.Rev. C 75, 034308 (2007)

A.B.Hayes, D.Cline, C.Y.Wu, H.Ai, H.Amro, C.Beausang, R.F.Casten, J.Gerl, A.A.Hecht, A.Heinz, H.Hua, R.Hughes, R.V.F.Janssens, C.J.Lister, A.O.Macchiavelli, D.A.Meyer, E.F.Moore, P.Napiorkowski, R.C.Pardo, Ch.Schlegel, D.Seweryniak, M.W.Simon, J.Srebrny, R.Teng, K.Vetter, H.J.Wollersheim

Spin dependence of K mixing, strong configuration mixing, and electromagnetic properties of 178Hf

NUCLEAR REACTIONS 178Hf(136Xe, 136Xe'), E=650 MeV; measured prompt and delayed Eγ, Iγ, γγ-, (particle)γ-coin following Coulomb excitation. Ta(178Hf, 178Hf'), E ≈ 700-850 MeV; measured isomer production σ. 178Hf deduced levels, J, π, rotational bands, transition matrix elements, K-mixing features. Gammasphere, Chico arrays.

doi: 10.1103/PhysRevC.75.034308
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2006HA04      Phys.Rev.Lett. 96, 042505 (2006)

A.B.Hayes, D.Cline, C.Y.Wu, J.Ai, H.Amro, C.Beausang, R.F.Casten, J.Gerl, A.A.Hecht, A.Heinz, R.Hughes, R.V.F.Janssens, C.J.Lister, A.O.Macchiavelli, D.A.Meyer, E.F.Moore, P.Napiorkowski, R.C.Pardo, Ch.Schlegel, D.Seweryniak, M.W.Simon, J.Srebrny, R.Teng, K.Vetter, H.J.Wollersheim

Breakdown of K Selection in 178Hf

NUCLEAR REACTIONS Ta(178Hf, 178Hf'), E≈ 700-850 MeV; measured delayed Eγ, Iγ following projectile Coulomb excitation; deduced isomer excitation function. 178Hf deduced transition matrix elements, K-mixing features.

RADIOACTIVITY 178mHf(IT) [from Coulomb excitation]; measured Eγ, Iγ. 178Hf deduced transition matrix elements, K-mixing features.

doi: 10.1103/PhysRevLett.96.042505
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2004WU05      Phys.Rev. C 70, 014313 (2004)

C.Y.Wu, D.Cline, M.W.Simon, R.Teng, K.Vetter, M.P.Carpenter, R.V.F.Janssens, I.Wiedenhover

Rotational bands in neutron-rich 169, 171, 172Er

NUCLEAR REACTIONS 170Er(238U, X)169Er/171Er/172Er, E=1358 MeV; measured Eγ, Iγ, γγ-, (particle)γ-coin. 169,171,172Er deduced high-spin levels, J, π, configurations, B(M1)/B(E2). Gammasphere, Chico arrays.

doi: 10.1103/PhysRevC.70.014313
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2003WU07      Phys.Rev. C 68, 044305 (2003)

C.Y.Wu, D.Cline, M.W.Simon, R.Teng, K.Vetter, M.P.Carpenter, R.V.F.Janssens, I.Wiedenhover

Kπ=4- isomers and their rotational bands in 168, 170Er

NUCLEAR REACTIONS 168,170Er(238U, 238U'), E=1358 MeV; measured prompt and delayed Eγ, Iγ, γγ-, (particle)γ-coin. 168,170Er deduced levels, J, π, rotational bands, B(E1), configurations. Gammasphere, Chico arrays.

doi: 10.1103/PhysRevC.68.044305
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2002HA54      Phys.Rev.Lett. 89, 242501 (2002)

A.B.Hayes, D.Cline, C.Y.Wu, M.W.Simon, R.Teng, J.Gerl, C.Schlegel, H.J.Wollersheim, A.O.Macchiavelli, K.Vetter, P.Napiorkowski, J.Srebrny

Coulomb Excitation Paths of High-K Isomer Bands in 178Hf

NUCLEAR REACTIONS 178Hf(136Xe, 136Xe'), E=650 MeV; measured prompt and delayed Eγ, Iγ, (particle)γ-, γγ-coin following Coulomb excitation; deduced high-K isomer bands population mechanisms. 178Hf deduced high-spin levels, J, π, B(E2), K-mixing features. Gammasphere and Chico arrays.

doi: 10.1103/PhysRevLett.89.242501
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2001WU03      Phys.Rev. C64, 014307 (2001); Comment Phys.Rev. C66, 039801 (2002)

C.Y.Wu, D.Cline, A.B.Hayes, M.W.Simon, R.Krucken, J.R.Cooper, C.J.Barton, C.W.Beausang, C.Bialik, M.A.Caprio, R.F.Casten, A.A.Hecht, H.Newman, J.Novak, N.Pietralla, K.Zyromski, N.V.Zamfir

Two-Phonon γ-Vibrational Strength in Osmium Nuclei

NUCLEAR REACTIONS 188,190Os(58Ni, 58Ni'), E=275 MeV; measured Doppler-shifted Eγ, Iγ, γγ-, (particle)γ-coin following Coulomb excitation. 188,190Os deduced levels, J, π, B(E2), two-phonon γ-vibration strength. Recoil-distance technique.

doi: 10.1103/PhysRevC.64.014307
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2001WU05      Phys.Rev. C64, 064317 (2001)

C.Y.Wu, D.Cline, M.W.Simon, G.A.Davis, R.Teng, A.O.Macchiavelli, K.Vetter

Electromagnetic Properties of the Rotationally Aligned Band in 162Dy

NUCLEAR REACTIONS 118Sn(162Dy, 162Dy'), (164Dy, 164Dy'), E=780, 790 MeV; measured Eγ, Iγ, γγ-, (particle)γ-coin. 162,164Dy deduced high-spin levels, J, π, B(M1), B(E2), deformation. Gammasphere, Chico arrays.

doi: 10.1103/PhysRevC.64.064317
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2000SI32      Nucl.Instrum.Methods Phys.Res. A452, 205 (2000)

M.W.Simon, D.Cline, C.Y.Wu, R.W.Gray, R.Teng, C.Long

CHICO, a Heavy Ion Detector for Gammasphere

NUCLEAR REACTIONS 170Er(238U, 238U'), E=1358 MeV; measured Eγ, Iγ, (particle)γ-coin. Position sensitive heavy ion detector system.

doi: 10.1016/S0168-9002(00)00429-0
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2000WU01      Phys.Rev. C61, 021305 (2000)

C.Y.Wu, D.Cline, M.W.Simon, R.Teng, K.Vetter, M.P.Carpenter, R.V.F.Janssens, I.Wiedenhover

Complex Band Interactions in 170Er

NUCLEAR REACTIONS 170Er(238U, 238U'), E=1358 MeV; measured Eγ, Iγ, γγ-, (particle)γ-coin following Coulomb excitation. 170Er deduced high-spin levels, J, π, vibrational bands features. 170Er(238U, 237U), (238U, 236U), E=1358 MeV; measured Eγ, Iγ, γγ-, (particle)γ-coin; deduced relative yields. Gammasphere, Chico arrays.

doi: 10.1103/PhysRevC.61.021305
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1998CU01      Phys.Rev. C57, 2170 (1998)

D.M.Cullen, C.-H.Yu, D.Cline, M.Simon, D.C.Radford, M.A.Riley, J.Simpson

High-Spin States and the First Signs of Band Termination in 156Ho

NUCLEAR REACTIONS 148Nd(14N, 6n), E=96 MeV; measured Eγ, Iγ, γγ-coin, DCO ratios. 156Ho deduced high-spin levels, J, π, rotational bands, configurations, B(M1)/B(E2), band termination.

doi: 10.1103/PhysRevC.57.2170
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1998SM06      Phys.Rev. C58, 3171 (1998)

J.F.Smith, M.W.Simon, R.W.Ibbotson, P.A.Butler, A.Aprahamian, A.M.Bruce, D.Cline, M.Devlin, G.D.Jones, P.M.Jones, C.Y.Wu

Lifetimes of States in the Opposite-Parity Bands of 153Eu: Recoil-distance measurements following Coulomb excitation

NUCLEAR REACTIONS 153Eu(58Ni, 58Ni'), E=220 MeV; measured Eγ, Iγ, (particle)γ-coin, Doppler-shifted spectra following Coulomb excitation. 153Eu deduced high-spin levels, J, π, T1/2, B(λ), intrinsic g-factors. Recoil distance technique.

doi: 10.1103/PhysRevC.58.3171
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1998VE04      Phys.Rev. C58, R2631 (1998)

K.Vetter, A.O.Macchiavelli, D.Cline, H.Amro, S.J.Asztalos, B.C.Busse, R.M.Clark, M.A.Deleplanque, R.M.Diamond, P.Fallon, R.Gray, R.V.F.Janssens, R.Krucken, I.Y.Lee, R.W.MacLeod, E.F.Moore, G.J.Schmid, M.W.Simon, F.S.Stephens, C.Y.Wu

Fragmentation of the Two-Phonon Octupole Vibrational States in 208Pb

NUCLEAR REACTIONS 208Pb(136Xe, 136Xe'), E=650 MeV; measured Eγ, Iγ, γγ-, (particle)γ-coin, γ-ray yields vs projectile scattering angle following Coulomb excitation. 208Pb deduced transition B(E3), fragmentation of two-phonon octupole vibrational strength. Gammasphere, Chico detector arrays.

doi: 10.1103/PhysRevC.58.R2631
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1998WU04      Phys.Rev. C57, 3466 (1998)

C.Y.Wu, M.W.Simon, D.Cline, G.A.Davis, A.O.Macchiavelli, K.Vetter

Production and Spectroscopy of the Neutron-Rich Nucleus 166Dy

NUCLEAR REACTIONS 118Sn(164Dy, 166Dy), E=790 MeV; 118Sn(162Dy, 164Dy), E=780 MeV; measured Eγ, Iγ(θ), σ(θ), (recoil)γ-coin. 164,166Dy deduced high-spin levels, J, π.

doi: 10.1103/PhysRevC.57.3466
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1996DE17      Phys.Rev. C53, 2900 (1996)

M.Devlin, D.Cline, R.Ibbotson, M.W.Simon, C.Y.Wu

Sub-Barrier Transfer Reactions in 58Ni + 162Dy

NUCLEAR REACTIONS 162Dy(58Ni, 59Ni), (58Ni, 60Ni), (58Ni, 57Co), (58Ni, 56Fe), E=240-273 MeV; measured transfer probabilities, Q-value spectra; deduced transfer slope coefficients, cold transfer component.

doi: 10.1103/PhysRevC.53.2900
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1996PF02      Phys.Rev. C54, 882 (1996)

Ch.Pfeifer, S.Roesler, M.Simon

Production of Antiprotons in the Upper Atmosphere by Interacting Primary Cosmic Rays

NUCLEAR REACTIONS 16O, 1H(p, X), E=40 GeV; calculated p-bar differential yield. Monte Carlo simulations.

doi: 10.1103/PhysRevC.54.882
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1996WA25      Nucl.Phys. A608, 77 (1996)

X.-H.Wang, C.-H.Yu, D.M.Cullen, D.C.Bryan, M.Devlin, M.J.Fitch, A.Galindo-Uribarri, R.W.Gray, D.M.Herrick, R.W.Ibbotson, K.L.Kurz, S.Mullins, S.Pilotte, D.C.Radford, M.R.Satteson, M.W.Simon, D.Ward, C.Y.Wu, L.H.Yao

High-Spin States in Odd-Odd 164Lu

NUCLEAR REACTIONS 149Sm(19F, 4n), E=85 MeV; 146Nd(23Na, 5n), E=110 MeV; measured Eγ, Iγ, γγ-coin. 164Lu deduced high-spin levels, J, π, γ-branching, B(M1)/B(E2) ratios, band crossings, signature inversion, neutron-proton interactions.

doi: 10.1016/S0375-9474(96)00254-0
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1995CR05      Phys.Rev. C52, 1934 (1995)

A.J.Cresswell, P.A.Butler, D.Cline, R.A.Cunningham, M.Devlin, F.Hannachi, R.Ibbotson, G.D.Jones, P.M.Jones, M.Simon, J.Simpson, J.F.Smith, C.Y.Wu

Population of Collective Bands in Dy Isotopes using Heavy Ion Induced Transfer Reactions

NUCLEAR REACTIONS 161Dy(61Ni, 62Ni), (61Ni, 60Ni), E=270 MeV; measured (particle)γγ-coin, Eγ, Iγ. 160,162Dy deduced levels, band structure, configuration.

doi: 10.1103/PhysRevC.52.1934
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1995DE63      Nucl.Instrum.Methods Phys.Res. A357, 467 (1995)

M.Devlin, C.Y.Wu, D.Cline, R.Ibbotson, M.W.Simon

A Kinematic-Coincidence Detector System for Sub-Barrier Heavy-Ion Reaction Studies

NUCLEAR REACTIONS 162Dy(58Ni, X), E=240 MeV; measured neutron, proton production Q spectra. Kinematic coincidence detector system, sub-barrier reactions.

doi: 10.1016/0168-9002(94)01695-X
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1995WU01      Phys.Rev. C51, 173 (1995)

C.Y.Wu, D.Cline, M.Devlin, K.G.Helmer, R.W.Ibbotson, M.W.Simon, P.A.Butler, A.J.Cresswell, G.D.Jones, P.M.Jones, J.F.Smith, R.A.Cunningham, J.Simpson

Excitation-Energy Partition in Quasielastic Transfer Reactions at Near Barrier Energies

NUCLEAR REACTIONS 161Dy(58Ni, 59Ni), E=265 MeV; 161Dy(61Ni, 62Ni), E=267, 270 MeV; measured (particle)γ-coin; deduced receptor, donor excitation energy partition. 59,62Ni levels deduced relative population.

doi: 10.1103/PhysRevC.51.173
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1994CR06      Acta Phys.Pol. B25, 565 (1994)

A.J.Cresswell, P.A.Butler, D.Cline, R.A.Cunningham, M.Devlin, F.Hannachi, K.G.Helmer, R.Ibbotson, G.D.Jones, P.M.Jones, I.-Y.Lee, X.-T.Liu, J.O.Rasmussen, M.W.Simon, J.Simpson, J.F.Smith, M.A.Stoyer, C.-Y.Wu

Heavy Ion Transfer Studies using Detector Arrays

NUCLEAR REACTIONS, ICPND 161Dy(61Ni, 62Ni), (61Ni, 60Ni), E=270 MeV; measured γγ-coin. 160,162Dy deduced levels, band structure, configuration. 239Pu(117Sn, 118Sn), E=630 MeV; measured fragment spectra following residual isomer fission, γγ-coin; deduced superdeformed states population probability by transfer reaction.


1993HO12      Phys.Rev. C48, 433 (1993)

D.J.Horen, R.L.Auble, C.Y.Wu, D.Cline, M.Devlin, R.Ibbotson, M.W.Simon

Half-Life of the 2+1 State of 94Zr

NUCLEAR REACTIONS 94Zr(32S, 32S'), E=105 MeV; measured γ(32S)-coin, recoil distance. 94Zr level deduced T1/2, B(λ).

doi: 10.1103/PhysRevC.48.433
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1993HO19      Phys.Rev. C48, R2131 (1993)

D.J.Horen, R.L.Auble, G.R.Satchler, J.R.Beene, I.Y.Lee, C.Y.Wu, D.Cline, M.Devlin, R.Ibbotson, M.W.Simon

Lifetime of the 3-1 State and Octupole Collectivity in 96Zr

NUCLEAR REACTIONS 96Zr(32S, 32S'), E=105; measured Eγ, Iγ, γ(32S)-coin. 96Zr(6Li, 6Li'), E=70 MeV; analyzed σ(θ). 96Zr level deduced T1/2, B(λ). Model comparisons.

doi: 10.1103/PhysRevC.48.R2131
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1969BO49      Nucl.Instr.Methods 73, 323 (1969)

H.E.Bosch, M.A.Fariolli, N.Martin, M.C.Simon

X-Ray Spectroscopy Related to the Determination of Electron-Capture Ratios

RADIOACTIVITY 133Ba, 57Co; measured E(X-ray), I(X-ray); deduced Q, LM/K.

doi: 10.1016/0029-554X(69)90403-0
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1967BO18      Phys.Rev. 159, 1029(1967)

H.E.Bosch, M.C.Simon, E.Szichman, L.Gatto, S.M.Abecasis

Disintegration of Sn113

NUCLEAR STRUCTURE 113Sn; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.159.1029
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1965BO41      Bull.Am.Phys.Soc. 10, No.6, 714, DG8 (1965)

H.E.Bosch, L.Gatto, M.Simon, E.Szichman

Disintegration of Sn-113

NUCLEAR STRUCTURE 113Sn; measured not abstracted; deduced nuclear properties.


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Note: The following list of authors and aliases matches the search parameter M.Simon: , M.C.SIMON, M.W.SIMON