Difference between revisions of "References and Documents"

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* ''The astrophysical S factor of <sup>12</sup>C(α, γ )<sup>16</sup>O at stellar energy''
 
* ''The astrophysical S factor of <sup>12</sup>C(α, γ )<sup>16</sup>O at stellar energy''
 
D. Schürmann, L. Gialanella, R. Kunz, F. Strieder, Phys. Lett. B '''711''' (2012) 35 [http://dx.doi.org/10.1016/j.physletb.2012.03.064] [[media:PhysLettB.711.35.pdf]]
 
D. Schürmann, L. Gialanella, R. Kunz, F. Strieder, Phys. Lett. B '''711''' (2012) 35 [http://dx.doi.org/10.1016/j.physletb.2012.03.064] [[media:PhysLettB.711.35.pdf]]
 +
 +
* ''Determination of the E1 component of the low-energy <sup>12</sup>C(α, γ )<sup>16</sup>O cross section''
 +
X. D. Tang et al., Phys. Rev. C '''81''', (2010) 045809 [http://dx.doi.org/10.1103/PhysRevC.81.045809] [[media:PhysRevC.81.045809.pdf]]
  
 
* ''New Determination of the Astrophysical S Factor S<sub>E1</sub> of the <sup>12</sup>C(α,γ)<sup>16</sup>O Reaction''
 
* ''New Determination of the Astrophysical S Factor S<sub>E1</sub> of the <sup>12</sup>C(α,γ)<sup>16</sup>O Reaction''
X. D. Tang et al., Phys. Rev. Lett. '''99''' (2007) 052502 [[media:PhysRevLett.99.052502.pdf]]
+
X. D. Tang et al., Phys. Rev. Lett. '''99''' (2007) 052502 [http://dx.doi.org/10.1103/PhysRevLett.99.052502] [[media:PhysRevLett.99.052502.pdf]]
  
 
* ''A new study for <sup>16</sup>O(γ,α)<sup>12</sup>C at the energies of nuclear astrophysics interest: The inverse of key nucleosynthesis reaction <sup>12</sup>C(α,γ)<sup>16</sup>O''
 
* ''A new study for <sup>16</sup>O(γ,α)<sup>12</sup>C at the energies of nuclear astrophysics interest: The inverse of key nucleosynthesis reaction <sup>12</sup>C(α,γ)<sup>16</sup>O''
Line 95: Line 98:
  
 
* ''Nuclear reactions in stellar helium burning and later hydrostatic burning stages''
 
* ''Nuclear reactions in stellar helium burning and later hydrostatic burning stages''
L.R. Buchmann, C.A. Barnes, Nucl. Phys. A '''777''' (2006) 254 [[media:NuclPhysA.777.254.pdf]]
+
L.R. Buchmann, C.A. Barnes, Nucl. Phys. A '''777''' (2006) 254 [http://dx.doi.org/10.1016/j.nuclphysa.2005.01.005] [[media:NuclPhysA.777.254.pdf]]
  
 
* ''E1 and E2 capture cross section and astrophysical reaction rate of the key reaction <sup>12</sup>C(α,γ)<sup>16</sup>O''
 
* ''E1 and E2 capture cross section and astrophysical reaction rate of the key reaction <sup>12</sup>C(α,γ)<sup>16</sup>O''

Revision as of 10:23, 17 August 2015

Program Advisory Committee (PAC)


Talks

  • Measurement of 16O(γ,α)12C with Bubble Chamber and Bremsstrahlung Beam at Jefferson Lab Injector

R. Suleiman, Jefferson Lab Accelerator Seminar, January 23 (2014).

- Abstract: media:01-23-14_Riad Suleiman.pdf media:Abstract_Acc_Seminar.pdf media:Abstract_Acc_Seminar.docx
- Presentation: media:Acc_Seminar_Suleiman_Jan2014.pdf media:Acc_Seminar_Suleiman_Jan2014.pptx
- Root macro files used to generate figures presented in this seminar (change txt to tar): media:AccSeminar.txt
  • Measurement of 16O(γ,α)12C with Bubble Chamber and Bremsstrahlung Beam at Jefferson Lab Injector

R. Suleiman, Graduate Student and Post-Doc Pizza Seminar, April 16 (2014).

- Abstract: media:Abstract_GS_Seminar.pdf media:Abstract_GS_Seminar.docx
- Presentation: media:GS_Seminar_Suleiman_April2014.pdf media:GS_Seminar_Suleiman_April2014.pptx
  • Measurement of 16O(γ,α)12C with Bubble Chamber and Bremsstrahlung Beam at Jefferson Lab Injector

R. Suleiman, TRIUMF Accelerator Seminar, June 4 (2014).

- Abstract: media:Abstract_TRIUMF_Seminar.pdf media:Abstract_TRIUMF_Seminar.docx
- Presentation: media:TRIUMF_Seminar_Suleiman_June_2014.pdf media:TRIUMF_Seminar_Suleiman_June_2014.pptx
  • Measurement of 16O(γ,α)12C with Bubble Chamber and Bremsstrahlung Beam at Jefferson Lab Injector

R. Suleiman, ODU Nuclear Physics Seminar, July 20 (2015).

- Abstract: media:Abstract_ODU_Seminar.pdf media:Abstract_ODU_Seminar.docx
- Presentation: media:ODU_Seminar_Suleiman_July_2015.pdf media:ODU_Seminar_Suleiman_July_2015.pptx


Proceedings

  • Determination of astrophysical thermonuclear rates with a bubble chamber: 12C(α,γ)16O reaction case

PEB Proceedings, [1]. AIP Conf. Proc. 1563, 239 (2013), media:AIP.1.4829419.pdf [2]


Bubble Chamber

  • Bubble chambers for experiments in nuclear astrophysics

B. DiGiovine et al., Nucl. Inst. Meth. A 781 (2015) 96 [3] media:NuclInstMethA.781.96.pdf

  • First determination of an astrophysical cross section with a bubble chamber: The 15N(α,γ) 19F reaction

C. Ugalde et al., Phys. Lett. B 719 (2013) 74 [4] media:PhysLettB.719.74.pdf

  • New insights into particle detection with superheated liquids

S. Archambault et al., New J. Phys. 13 (2011) 043006 [5] media:NewJPhys.13.043006.pdf

  • Discrimination of nuclear recoils from alpha particles with superheated liquids

F. Aubin et al., New J. Phys. 10 (2008) 103017 [6] media:NewJPhys.10.103017.pdf

  • Dark Matter Search Results from the PICO-2L C3F8 Bubble Chamber

C. Amole et al., Phys. Rev. Lett. 114 (2015) 231302 [7] media:PhysRevLett.114.231302.pdf

  • Direct measurement of the bubble-nucleation energy threshold in a CF3I bubble chamber

E. Behnke et al., Phys. Rev. D 88 (2013) 021101(R) [8] media:PhysRevD.88.021101.pdf

  • Study of low frequency acoustic signals from superheated droplet detector

P.K. Mondal et al., Nucl. Inst. Meth. A 729 (2013) 182 [9] media:NuclInstMethA.729.182.pdf

  • Development of bubble chambers with enhanced stability and sensitivity to low-energy nuclear recoils

W.J. Bolte et al., Nucl. Inst. Meth. A 577 (2007) 569 [10] media:NuclInstMethA.577.569.pdf

  • Response of superheated droplet detectors of the PICASSO dark matter search experiment

M. Barnabé-Heider et al., Nucl. Inst. Meth. A 555 (2005) 184 [11] media:NuclInstMethA.555.184.pdf

  • Superheated liquid and its place in radiation physics

S.C. Roy, Radiation Physics and Chemistry 61 (2001) 271 [12] media:RadiatPhysChem.61.271.pdf

  • Search for dark matter with moderately superheated liquids

V. Zacek, Nuovo Cimento A 107 (1994) 1247 [13] media:NuovoCementoA.107.1247.pdf

  • On the Theory of the Bubble Chamber

F. Seitz, Phys. of Fluids 1 (1957) 2 [14] media:Phys.Fluids.1.2.pdf


Oxygen S-Factor

  • Theoretical reaction rates of the 12C(α, γ )16O reaction from the potential model

M. Katsuma, Proceedings of Nuclei in the Cosmos (NIC XIII). 7-11 July 2014. Debrecen, Hungary media:1501.06250v1.pdf

  • The astrophysical S factor of 12C(α, γ )16O at stellar energy

D. Schürmann, L. Gialanella, R. Kunz, F. Strieder, Phys. Lett. B 711 (2012) 35 [15] media:PhysLettB.711.35.pdf

  • Determination of the E1 component of the low-energy 12C(α, γ )16O cross section

X. D. Tang et al., Phys. Rev. C 81, (2010) 045809 [16] media:PhysRevC.81.045809.pdf

  • New Determination of the Astrophysical S Factor SE1 of the 12C(α,γ)16O Reaction

X. D. Tang et al., Phys. Rev. Lett. 99 (2007) 052502 [17] media:PhysRevLett.99.052502.pdf

  • A new study for 16O(γ,α)12C at the energies of nuclear astrophysics interest: The inverse of key nucleosynthesis reaction 12C(α,γ)16O

Y. Xu et al., Nucl. Inst. Meth. A 581 (2007) 866 media:NuclInstMethA.581.866.pdf

  • Measurement of the Cascade Transition via the First Excited State of 16O in the 12C(α,γ)16O Reaction, and Its S Factor in Stellar Helium Burning

C. Matei et al., Phys. Rev. Lett. 97 (2006) 242503 media:PhysRevLett.97.242503.pdf

  • Nuclear reactions in stellar helium burning and later hydrostatic burning stages

L.R. Buchmann, C.A. Barnes, Nucl. Phys. A 777 (2006) 254 [18] media:NuclPhysA.777.254.pdf

  • E1 and E2 capture cross section and astrophysical reaction rate of the key reaction 12C(α,γ)16O

J.W. Hammer et. al., Nucl. Phys. A 758 (2005) 363 media:NuclPhysA.758.363.pdf

Previous S-Factor Measurements

  • 12C(α, γ )16O studied with the Karlsruhe 4π BaF2 detector

R. Plag et al., Phys. Rev. C 86, (2012) 015805 [19] media:PhysRevC.86.015805.pdf

  • 12C(α, γ )16O: The Key Reaction in Stellar Nucleosynthesis

R. Kunz et al., Phys. Rev. Lett. 86 (2001) 3244 [20] media:PhysRevLett.86.3244.pdf

  • GANDI. In the Focus of Nuclear Astrophysics: The 12C(α, γ )16O Reaction

M. Fey, Ph.D. Thesis, Stuttgart, Germany (2004), [21] media:diss_fey.pdf

  • EUROGAM. E1 and E2 S factors of 12C(α,γ0)16O from γ-ray angular distributions with a 4 π-detector array

M. Assunção et al., Phys. Rev. C 73, (2006) 055801 [22] media:PhysRevC.73.055801.pdf

  • First direct measurement of the total cross-section of 12C(α,γ)16O

D. Schürmann et. al., Eur. Phys. J. A 26 (2005) 301 [23] media:EurPhysJA.26.301.pdf

  • The E1 and E2 capture amplitudes in 12C(α,γ0)16O

G. Roters et al., Eur. Phys. J. A 6 (1999) 451 [24] media:EurPhysJA.6.451.pdf

  • 12C(α, γ )16O cross sections at stellar energies

J. M. L. Ouellet et al., Phys. Rev. C 54, (1996) 1982 [25] media:PhysRevC.54.1982.pdf

  • The 12C(α, γ )16O cross section at stellar energies

A. Redder et al., Nucl. Phys. A 462 (1987) 385 [26] media:NuclPhysA.462.385.pdf


Nucleosynthesis

  • Nucleosynthesis and remnants in massive stars of solar metallicity

S.E. Woosley and A. Heger, Phys. Reports 442 (2007) 269 [27] media:Phys.Reports.442.269.pdf

  • Coulomb dissociation as a source of information on radiative capture processes of astrophysical interest

G. Baur et al., Nucl. Phys. A 458 (1986) 188 [28] media:NuclPhysA.458.188.pdf

  • General properties of astrophysical reaction rates in explosive nucleosynthesis

T. Rauscher, J. Phys. Conf. Ser. 420 (2013) 012138 [29] media:J.Phys.Conf.Ser._420_1_012138.pdf


Astrophysics

  • Dependence of s-process nucleosynthesis in massive stars on triple-alpha and 12C(α,γ)16O reaction rate uncertainties

C. Tur et al., Astroph. J., 702(2) (2009) 1068 [30] media:AstrophJ_702_2_1068.pdf