NEW DETERMINATION OF THE 2H(d,p)3H AND 2H(d,n)3He REACTION RATES AT ASTROPHYSICAL ENERGIES
暂无分享,去创建一个
V. Burjan | V. Kroha | C. Spitaleri | G. G. Rapisarda | S. Typel | Emanuele Tognelli | Scilla Degl'Innocenti | P. G. Prada Moroni | M. La Cognata | R. G. Pizzone | J. Mrazek | G. Rapisarda | S. Degl'innocenti | Z. Hons | S. Typel | J. Mrázek | M. Sergi | M. La Cognata | R. Pizzone | R. Spartá | A. Tumino | E. Tognelli | L. Lamia | C. Spitaleri | L. Lamia | R. Sparta | M. L. Sergi | A. M. Mukhamedzhanov | Aurora Tumino | S. Piskor | S. Romano | Z. Hons | V. Burjan | V. Kroha | A. Mukhamedzhanov | S. Romano | S. Piskor | P. P. Prada Moroni
[1] F. Allard,et al. Evolutionary models for low-mass stars and brown dwarfs: uncertainties and limits at very young ages , 2002 .
[2] G. Chabrier,et al. Effect of episodic accretion on the structure and the lithium depletion of low-mass stars and planet-hosting stars , 2010, 1008.4288.
[3] G. Rapisarda,et al. New Advances in the Trojan Horse Method as an Indirect Approach to Nuclear Astrophysics , 2013 .
[4] Connecting the primordial and Galactic deuterium abundances , 2007, astro-ph/0703682.
[5] G. Augst,et al. Treiman-Yang criterion for direct nuclear reactions , 1965 .
[6] A. Musumarra,et al. Trojan Horse estimate of bare nucleus astrophysical S(E)-factor for the $\mathsf{^{6}}$Li(p,$\alpha$)$^{\mathsf{3}}$He reaction and its astrophysical implications , 2005 .
[7] H. J. Karwowski,et al. Precision measurements of H2(d,p)H3 and H2(d,n)He3 total cross sections at Big Bang nucleosynthesis energies , 2006 .
[8] George Sonneborn,et al. What Is the Total Deuterium Abundance in the Local Galactic Disk , 2006 .
[9] W. Trzaska,et al. A NOVEL APPROACH TO MEASURE THE CROSS SECTION OF THE 18O(p, α)15N RESONANT REACTION IN THE 0–200 keV ENERGY RANGE , 2009 .
[10] M. Krumholz,et al. ON THE RELIABILITY OF STELLAR AGES AND AGE SPREADS INFERRED FROM PRE-MAIN-SEQUENCE EVOLUTIONARY MODELS , 2011, 1101.3599.
[11] C. Bertulani,et al. Nuclear Astrophysics from View Point of Few-Body Problems , 2013 .
[12] G. Chabrier,et al. EPISODIC ACCRETION AT EARLY STAGES OF EVOLUTION OF LOW-MASS STARS AND BROWN DWARFS: A SOLUTION FOR THE OBSERVED LUMINOSITY SPREAD IN H–R DIAGRAMS? , 2009, 0907.3886.
[13] V. N. Kondratyev,et al. Indirect investigation of the {ital d}+{sup 6}Li reaction at low energies relevant for nuclear astrophysics , 1996 .
[14] S. Degl'Innocenti,et al. The Pisa pre-main sequence tracks and isochrones - A database covering a wide range of Z, Y, mass, and age values , 2011, 1107.2318.
[15] M. Pellegriti,et al. The Bare Astrophysical S(E) Factor of the 7Li(p, α)α Reaction , 2001 .
[16] Z. Fülöp,et al. Validity test of the Trojan Horse Method applied to the 7Li + p → α + α reaction via the 3He break-up , 2006 .
[17] G. Chabrier,et al. OBSERVED LUMINOSITY SPREAD IN YOUNG CLUSTERS AND FU Ori STARS: A UNIFIED PICTURE , 2012, 1206.2374.
[18] P. Moroni,et al. AN UPDATED 6Li(p, α)3He REACTION RATE AT ASTROPHYSICAL ENERGIES WITH THE TROJAN HORSE METHOD , 2013 .
[19] M. Marconi,et al. The FRANEC stellar evolutionary code , 2008 .
[20] H. Wolter,et al. Extraction of Astrophysical Cross Sectionsin the Trojan-Horse Method , 2000 .
[21] P. Dalpiaz,et al. Problems of fundamental modern physics , 1990 .
[22] G. Steigman. PRIMORDIAL NUCLEOSYNTHESIS: SUCCESSES AND CHALLENGES , 2005, astro-ph/0511534.
[23] Edward J. Wollack,et al. First year Wilkinson Microwave Anisotropy Probe (WMAP) observations: Determination of cosmological parameters , 2003, astro-ph/0302209.
[24] S. Degl'Innocenti,et al. The Pisa Stellar Evolution Data Base for low-mass stars , 2012, 1202.4864.
[25] S. Burles,et al. The Deuterium Abundance at z = 0.701 toward QSO 1718+4807 , 1998, astro-ph/9810217.
[26] A. Musumarra,et al. Improved information on electron screening in 7Li (p,α)α using the Trojan-horse method , 2000 .
[27] J. Lindl. Development of the indirect‐drive approach to inertial confinement fusion and the target physics basis for ignition and gain , 1995 .
[28] Robert Malaney,et al. Experimental, computational, and observational analysis of primordial nucleosynthesis , 1993 .
[29] G. Rapisarda,et al. The Fluorine Destruction in Stars: First Experimental Study of the 19F(p, α0)16O Reaction at Astrophysical Energies , 2011 .
[30] G. Shaviv,et al. Is There a Dynamic Effect in the Screening of Nuclear Reactions in Stellar Plasmas , 2000 .
[31] C. Spitaleri,et al. EFFECT OF HIGH-ENERGY RESONANCES ON THE 18O(p, α)15N REACTION RATE AT AGB AND POST-AGB RELEVANT TEMPERATURES , 2010 .
[32] A. Coc,et al. Compilation and R-matrix analysis of Big Bang nuclear reaction rates , 2004, astro-ph/0407101.
[33] A. Rinollo,et al. Quasi-free 6Li(n,α)3H reaction at low energy from 2H break-up , 2005 .