Line Tables

These tables give observed air wavelengths for the 2000-20000 Å range for spectra other than Fr I. Outside of the 2000-20000 Å range, the wavelengths are vacuum wavelengths. Lines of Fr I are extrapolated vacuum wavelengths from known energy levels. All observed lines are from NIST ASD. All energy level information is from NIST ASD. Wavelengths from MIT Wavelength Tables have been omitted as this publication appears to still be under copyright. However, in some cases, the exact same wavelength is given by NIST and MIT; in that case, the line is included.

Line intensities have been adjusted in the visible region to match photographed visible spectra. Line intensities of Rn have been adjusted to match the Grotrian diagram of Rn I. Line intensities in the infrared and ultraviolet are less reliable, but every effort was made to estimate them as accurately as possible. The elements He, O, Cl, Ar, Kr, and Xe have had their NIR lines photographed out to roughly 11000 Å. The intensities of the "brightest" several IR lines of each of these elements, in the 7000-10000 Å range, can be trusted. For the range of 3800-8000 Å, estimated visual brightnesses (EVB) are given. A dash in either of the intensity columns means the line intensity would be less than one relative to other lines of the same spectrum.

All Spectra

H   He
Li Be   B C N O F Ne
Na Mg   Al Si P S Cl Ar
K Ca   Sc Ti V Cr Mn Fe Co Ni Cu Zn Ga Ge As Se Br Kr
Rb Sr   Y Zr Nb Mo Tc Ru Rh Pd Ag Cd In Sn Sb Te I Xe
Cs Ba La Ce Pr Nd Pm Sm Eu Gd Tb Dy Ho Er Tm Yb Lu Hf Ta W Re Os Ir Pt Au Hg Tl Pb Bi Po At Rn
Fr Ra Ac Th Pa U Np Pu Am Cm Bk Cf Es Fm Md No Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og

Entire Range | 2000-10000 Å | Visible Region | Si CCD/CMOS Region | Thermal IR | Vacuum UV
Specific Wavelength (rounded):  Å  nm
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λ, Å E. Sp.# Rel.Int. EVB Lower Config Lower Term+J Lower Level Upper Config Upper Term+J Upper Level
3261.0683 Pt I 7 - 5d9.6s 3D1 10131.8684 5d8.6s.(4P).6p 52 40787.8417
3261.6887 Pt I 45 - 5d8.6s.(4F).6p a 55 33680.39 5d8.(3F4).6s.6d b (4,?)6 64330.516
3262.531 Pt II 2 - 5d8.6p 74745°7/2 74745.974 5d8.(3F).6d (4,5/2)9/2 105388.167
3263.578 Pt I 5 - 5d8.6s.(4F).6p a 55 33680.39 5d8.(3F4).6s.6d.(3D?) a (4,?)4 64312.77
3263.919 Pt II - - 5d7.6s2 2F7/2 64003.938 5d7.6s.6p 94633°5/2 94633.282
3266.019 Pt II 15 - 5d8.(1G).6p (4,1/2)°7/2 75184.933 5d8.(3F).7s (3,1/2)7/2 105794.571
3268.417 Pt I 80 - 5d8.6s.(4F).6p a 55 33680.39 5d8.(3F4).6s.6d.(3D?) a (4,?)5 64267.433
3269.712 Pt II 3 - 5d7.(4P).6s.6p.(3P°) 79683°1/2 79683.43 5d8.(3F).7s (2,1/2)3/2 110258.22
3272.778 Pt I 8 - 5d9.6p 33 34122.1452 5d8.(3F4).6s.6d.(3D?) b (4,?)4 64668.449
3273.559 Pt II - - 5d7.6s.6p 79607°5/2 79607.522 5d8.(3P).6d (2,5/2)7/2 110146.852
3280.831 Pt I - - 5d8.6s2 1G4 21967.101 5d8.6s.(2F).6p 35 52438.5877
3281.967 Pt I 95 - 5d8.6s.(4F).6p a 55 33680.39 5d8.(3F4).6s.6d.(3D?) a (4,?)6 64141.143
3283.2046 Pt I 30 - 5d9.6s b 1D2 13496.2595 5d8.6s.(4P).6p a 53 43945.534
3285.401 Pt II - - 5d7.6s.6p 75365°5/2 75365.892 5d8.(3F).7s (3,1/2)7/2 105794.571
3286.809 Pt II - - 5d8.(3P).6p 79092°3/2 79092.198 5d8.(3P).6d (2,3/2)1/2 109508.042
3290.2196 Pt I 195 - 5d9.6s 3D1 10131.8684 5d8.6s.(4F).6p 52 40516.229
3290.2948 Pt I 1 - 5d9.6p 33 34122.1452 5d8.(3F3).6s.7s.(3S1) (3,1)3 64505.827
3293.5 Pt II - - 5d7.(4F).6s.6p.(3P°) (9/2,2)°11/2 74409.511 5d8.(3F).6d (4,5/2)13/2 104763.48
3293.64 Pt I 1 - 5d9.6p 33 37769.0673 5d9.6d b 3G4 68121.568
3294.921 Pt II 2 - 5d8.6p 74745°7/2 74745.974 5d8.(3F).6d (4,5/2)7/2 105086.89
3298.15 Pt II 2 - 5d8.6p 74619°5/2 74619.157 5d8.(3F).6d (4,5/2)3/2 104930.311
3301.8596 Pt I 2000 - 5d9.6s 3D2 6567.4517 5d9.6p 31 36844.695
3306.142 Pt I - - 5d9.6p 33 37769.0673 5d9.6d 3G3 68006.936
3309.949 Pt II 9 - 5d8.(1G).6p (4,1/2)°7/2 75184.933 5d8.(3F).6d (4,5/2)9/2 105388.167
3311.7986 Pt I 7 - 5d8.6s.(4F).6p 56 36781.545 5d8.(3F4).6s.8s.(3S1) (4,1)5 66967.944
3312.482 Pt II 20 - 5d8.(3P).6p (2,3/2)°7/2 66434.382 5d8.(3F).7s (4,1/2)7/2 96614.398
3315.0419 Pt I 1000 - 5d9.6s 3D3 0 5d8.6s.(4F).6p 54 30156.846
3315.452 Pt II 10 - 5d8.(3F).6p (3,3/2)°3/2 71364.741 5d8.(3P).7s (2,1/2)3/2 101517.63
3323.7881 Pt I 85 - 5d8.6s2 3F3 10116.7158 5d8.6s.(4F).6p 54 40194.2203
3329.689 Pt II 3 - 5d7.6s2 2G9/2 43737.431 5d7.6s.6p 73761°7/2 73761.781
3335.8163 Pt I 5 - 5d8.6s2 3P1 18566.545 5d8.6s.(4F).6p 52 48535.587
3336.732 Pt II 4 - 5d8.(1G).6p (4,3/2)°7/2 80197.371 5d8.(3F).7s (2,1/2)5/2 110158.213
3337.906 Pt II 1 - 5d7.6s2 4F5/2 36484.069 5d8.(3P).6p (2,3/2)°7/2 66434.382
3338.14 Pt I 10 - 5d9.6p a 32 32620.0047 5d9.8s 3D3 62567.983
3340.08 Pt II 1 - 5d7.6s2 4P5/2 41434.119 5d8.(3F).6p (3,3/2)°3/2 71364.741
3343.299 Pt II 5 - 5d8.(1G).6p (4,1/2)°7/2 75184.933 5d8.(3F).6d (4,5/2)7/2 105086.89
3343.8961 Pt I 65 - 5d8.6s2 3F2 15501.8344 5d8.6s.(4P).6p 51 45398.466
3345.2554 Pt II 45 - 5d8.(3F).6p (3,3/2)°7/2 71314.622 5d8.(3P).7s (2,1/2)5/2 101199.134
3350.882 Pt II 15 - 5d8.(3F).6p (3,3/2)°3/2 71364.741 5d8.(3P).7s (2,1/2)5/2 101199.134
3351.94 Pt II 4 - 5d8.6p 76610°3/2 76610.092 5d8.(3F).6d (4,5/2)5/2 106434.974
3366.9903 Pt I 40 - 5d9.6s b 1D2 13496.2595 5d8.6s.(4F).6p 51 43187.829
3376.328 Pt II 1 - 5d8.(3F).6p 82824°3/2 82824.016 5d8.(3P).7s (1,1/2)3/2 112433.359
3380.992 Pt II 20 - 5d7.(4F).6s.6p.(3P°) 71948°5/2 71948.954 5d8.(3P).7s (2,1/2)3/2 101517.63
3383.812 Pt II 3 - 5d7.6s2 4F5/2 36484.069 5d8.(3P).6p (2,3/2)°3/2 66028.059
3384.819 Pt II - - 5d7.6s2 4P1/2 46046.461 5d8.6p 75581°3/2 75581.466
3388.768 Pt II 4 - 5d7.6s.6p 76461°5/2 76461.582 5d8.(3F).7s (3,1/2)5/2 105962.56
3391.378 Pt II 2 - 5d7.6s2 2F7/2 64003.938 5d7.6s.6p 93482°7/2 93482.03
3405.889 Pt II 3 - 5d8.6p 76610°3/2 76610.092 5d8.(3F).7s (3,1/2)5/2 105962.56
3406.518 Pt I 10 - 5d8.6s.(4F).6p a 53 35321.637 5d8.(3F4).6s.6d.(3D?) b (4,?)4 64668.449
3408.1308 Pt I 5000 - 5d8.6s2 3F4 823.6608 5d8.6s.(4F).6p 54 30156.846
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