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J/A+A/541/A61
  Oscillator and collision strengths for SiVIII (Tayal+, 2012)
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1.J/A+A/541/A61/table1Excitation energies (in Ryd) of the 68 target levels included in the present transition rates and scattering calculations (68 rows)
2.J/A+A/541/A61/table2Comparison of oscillator strengths and transition probabilities for some dipole radiative E1 transitions (45 rows)
3.J/A+A/541/A61/table3Oscillator strengths and transition probabilities for dipole radiative E1 transitions (654 rows)
4.J/A+A/541/A61/table4Effective collision strengths for transitions in SiVIII (2278 rows)

 
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Column  Constraint Explain   (UCD)
  (ALL)recno  Record number assigned by the VizieR team. Should Not be used for identification. (meta.record)
  (1)Index   [1,68] Index (meta.id)
  (1)State (char) State (phys)
  (1)2J  J value for the level of the state (phys.atmol.qn)
  (1)E Ry Present excitation energy (phys.energy;phys.atmol.level)
  (1)EBL Ry Excitation energy from CI calculation of Bhatia & Landi, (2003, At. Data and Nucl. Data Tables, 85, 317) (phys.energy;phys.atmol.level)
  (1)Eexp Ry (n) Excitation energy from experiment (Note 1)   (phys.energy;phys.atmol.level)
  (1)tau ns (n) Lifetime in dipole approximation from the present calculation (time.lifetime)
  (2+3)i (char) Initial level of a transition (phys.atmol.qn)
  (2+3)f (char) Final level of a transition (phys.atmol.qn)
  (2+3)gi  (2J+1) value for initial level of a transition (phys.atmol.qn)

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(n) indicates a possible blank or NULL column(i)indexed column
  (2+3)gf  (2J+1) value for final level of a transition (phys.atmol.qn)
  (2)fif  Present length value of oscillator strength (phys.atmol.oscStrength)
  (2+3)Aif s-1 Present length value of transition probability (phys.atmol.transProb)
  (2)fifBL  Length value of oscillator strength from calculations of Bhatia & Landi, (2003, At. Data and Nucl. Data Tables, 85, 317) (phys.atmol.oscStrength)
  (2)AifBL s-1 Length value of transition probability from calculations of Bhatia & Landi, (2003, At. Data and Nucl. Data Tables, 85, 317) (phys.atmol.transProb)
  (2)AifTF s-1 Length value of transition probability from calculations of Tachiev & Froese Fischer (2002, Cat. J/A+A/385/716) (phys.atmol.transProb)
  (3)lambda 0.1nm Wavelength of the transition (em.wl;phys.atmol.transition)
  (3)fL  Present length value of oscillator strength (phys.atmol.oscStrength)
  (3)fV  Present velocity value of oscillator strength (phys.veloc;phys.atmol.oscStrength)
  (4)i   [1,67] i lower level index of the transition (meta.id;phys.atmol.transProb;phys.atmol.transition)
  (4)j   [2,68] j upper level index of the transition (meta.id)
  (4)ECS1  Effective collision strength at Te=10000K (phys.atmol.collStrength)
  (4)ECS2.5  Effective collision strength at Te=25000K (phys.atmol.collStrength)

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(n) indicates a possible blank or NULL column(i)indexed column
  (4)ECS5  Effective collision strength at Te=50000K (phys.atmol.collStrength)
  (4)ECS7.5  Effective collision strength at Te=75000K (phys.atmol.collStrength)
  (4)ECS10  Effective collision strength at Te=100000K (phys.atmol.collStrength)
  (4)ECS20  Effective collision strength at Te=200000K (phys.atmol.collStrength)
  (4)ECS40  Effective collision strength at Te=400000K (phys.atmol.collStrength)
  (4)ECS60  Effective collision strength at Te=600000K (phys.atmol.collStrength)
  (4)ECS80  Effective collision strength at Te=800000K (phys.atmol.collStrength)
  (4)ECS100  Effective collision strength at Te=1000000K (phys.atmol.collStrength)
  (4)ECS120  Effective collision strength at Te=1200000K (phys.atmol.collStrength)
  (4)ECS200  Effective collision strength at Te=2000000K (phys.atmol.collStrength)
  (4)ECS300  Effective collision strength at Te=3000000K (phys.atmol.collStrength)
  (4)ECS400  Effective collision strength at Te=4000000K (phys.atmol.collStrength)

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