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J/A+AS/109/293
599
Heterochromatic extinction. I. (Grebel+, 1995)
ReadMe+ftp
1995A&AS..109..293G
Similar Catalogs
Post annotation
1.
J/A+AS/109/293/coeff1
*Rational polynomial coefficients
(Note)
(168 rows)
meta
J/A+AS/109/293/coeff1
2.
J/A+AS/109/293/coeff2
*Actual coefficients
(Note)
(168 rows)
meta
J/A+AS/109/293/coeff2
3.
J/A+AS/109/293/diffb
Differential interstellar extinction in UBVRI
(638 rows)
meta
J/A+AS/109/293/diffb
4.
J/A+AS/109/293/diffw
Differential interstellar extinction in CMT1T2
(638 rows)
meta
J/A+AS/109/293/diffw
5.
J/A+AS/109/293/totb
Total interstellar extinction in UBVRI
(638 rows)
meta
J/A+AS/109/293/totb
6.
J/A+AS/109/293/totw
Total interstellar extinction in CMT1T2
(638 rows)
meta
J/A+AS/109/293/totw
Simple Constraint
List Of Constraints
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Constraints
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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
)
(
RECORD
)
(1)
Filter
(char)
Filters or quantity involved
(Note 1)
(
meta.code;instr.filter
)
(
INST_FILTER_CODE
)
(1+2)
Band
(char)
Quantity, e.g., filter or colour
(
meta.code;instr.filter
)
(
INST_FILTER_CODE
)
(1+2)
logg
[cm/s2]
(n)
[]? Surface gravity
(
phys.gravity
)
(
PHYS_GRAVITY_SURFACE
)
(1+2)
n_logg
(char)
[m ] Lowest surface gravity model when there is no value for logg
(Note 2)
(
meta.note
)
(
NOTE
)
(1+2)
[Fe/H]
[Sun]
Metallicity
(
phys.abund.Fe
)
(
PHYS_ABUND_FE/H
)
(1)
num
Numerator degree
(Note 3)
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(1)
den
Denominator degree
(Note 3)
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(1)
MaxDev
Largest deviation
(Note 4)
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(1)
TCmin
Lower boundary of the valid range of temperature colour for that fit
(Note 5)
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(1)
TCmax
Upper boundary of the valid range of temperature colour for that fit
(Note 5)
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(2)
a0
Coefficient a0 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a1
Coefficient a1 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a2
(n)
[]? Coefficient a2 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a3
(n)
[]? Coefficient a3 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a4
(n)
[]? Coefficient a4 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a5
(n)
[]? Coefficient a5 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a6
(n)
[]? Coefficient a6 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a7
(n)
[]? Coefficient a7 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
a8
(n)
[]? Coefficient a8 in the numerator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
b1
(n)
[]? Coefficient b1 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
b2
(n)
[]? Coefficient b2 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
b3
(n)
[]? Coefficient b3 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
b4
(n)
[]? Coefficient b4 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(2)
b5
(n)
[]? Coefficient b5 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
b6
(n)
[]? Coefficient b6 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(2)
b7
(n)
[]? Coefficient b7 in the denominator
(
stat.fit.param
)
(
FIT_PARAM_VALUE
)
(3+4+5+6)
Star
(char)
Star type
(Note 1)
(
src.class
)
(
CLASS_OBJECT
)
(3+4+5+6)
[Fe/H]
Sun
Metallicity
(
phys.abund.Fe
)
(
PHYS_ABUND_FE/H
)
(3+4+5+6)
Teff
K
effective temperature
(
phys.temperature.effective
)
(
PHYS_TEMP_EFFEC
)
(3)
U-B
mag
(U-B) colour index
(
phot.color;em.opt.U;em.opt.B
)
(
PHOT_JHN_U-B
)
(3)
E(U-B)
mag
differential interstellar extinction in (U-B)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(3+4)
R1
E(U-B)/E(B-V) ratio
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(3)
B-V
mag
(B-V) colour index
(
phot.color;em.opt.B;em.opt.V
)
(
PHOT_CI_B-V
)
(3)
E(B-V)
mag
differential interstellar extinction in (B-V)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(3+4)
R2
E(B-V)/E(B-V) ratio
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(3)
V-R
mag
(V-R) colour index
(
phot.color;em.opt.V;em.opt.R
)
(
PHOT_JHN_V-R
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(3)
E(V-R)
mag
differential interstellar extinction in (V-R)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(3+4)
R3
E(V-R)/E(B-V) ratio
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(3)
R-I
mag
(R-I) colour index
(
phot.color;em.opt.R;em.opt.I
)
(
PHOT_JHN_R-I
)
(3)
E(R-I)
mag
differential interstellar extinction in (R-I)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(3+4)
R4
E(R-I)/E(B-V) ratio
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(3)
V-I
mag
(V-I) colour index
(
phot.color;em.opt.V;em.opt.I
)
(
PHOT_JHN_V-I
)
(3)
E(V-I)
mag
differential interstellar extinction in (V-I)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(3)
R5
E(V-I)/E(B-V) ratio
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(4)
C-M
mag
(C-M) colour index
(
phot.color
)
(
PHOT_WASH_C-M
)
(4)
E(C-M)
mag
differential interstellar extinction in (C-M)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(4)
M-T1
mag
(M-T1) colour index
(
phot.color
)
(
PHOT_WASH_M-T1
)
(4)
E(M-T1)
mag
differential interstellar extinction in (M-T1)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(4)
T1-T2
mag
(T1-T2) colour index
(
phot.color
)
(
PHOT_CI_UNDEF
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(4)
E(T1-T2)
mag
differential interstellar extinction in (T1-T2)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(4)
M-T2
mag
(M-T2) colour index
(
phot.color
)
(
PHOT_WASH_M-T2
)
(4)
E(M-T2)
mag
differential interstellar extinction in (M-T2)
(
phot.color.excess
)
(
PHOT_COLOR_EXCESS
)
(5)
A(U)X
mag
Total interstellar extinction in U for airmass 1 (because U filter is defined by atmospheric cutoff)
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(5)
A(B)X
mag
Total interstellar extinction in B for airmass 1 (to allow calculation of U-B.)
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(5)
A(B)
mag
Total interstellar extinction in B for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(5)
A(V)
mag
Total interstellar extinction in V for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(5)
A(R)
mag
Total interstellar extinction in R for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(5)
A(I)
mag
Total interstellar extinction in I for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(5)
R(V)
Ratio of total to differential extinction
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(5)
R(V)/R(V0)
R(V0): same ratio as R(V) but for star with standard spectrum, i.e. T_eff=17000, log(g)=5.0, and [Fe/H]=0.
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(6)
A(C)
mag
Total interstellar extinction in C for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(6)
A(M)
mag
Total interstellar extinction in M for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(6)
A(T1)
mag
Total interstellar extinction in T1 for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(6)
A(T2)
mag
Total interstellar extinction in T2 for airmass 0
(
phys.absorption
)
(
PHOT_EXTINCTION_ISM
)
(6)
R(T2)
Ratio of total to differential extinction
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
(6)
R(T2)/R(V0)
R(V0): same ratio as R(T2) but for star with standard spectrum, i.e. T_eff=17000, log(g)=5.0, and [Fe/H]=0.0
(
phys.absorption
)
(
PHOT_EXTINCTION_R
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
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