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
7276.96 Ta I 150 2 5d4.(5D).6s a 6D5/2 11243.63 5d3.6s.(5F).6p z 47/2 24981.85
7277.438 O II - - 2s2.2p2.(3P).3d 4D3/2 232745.981 2s2.2p2.(3P).4p 43/2 246483.317
7277.51 Si I 40 1 3s2.3p.4p 3P2 49188.617 3s2.3p.6d 31 62925.8
7277.62 Sc I 6 - 3d2.(3F).4p 43/2 31172.621 3d.(2D).4p2.(3P) 4F5/2 44909.52
7277.893 V I 1 - 3d3.(4F).4s.4p.(3P°) z 41/2 20606.467 3d5 c 4D3/2 34342.887
7277.9 Ce I - - 4f.5d.6s2 35 2208.657 4f.5d.(3F°).6s.6p.(3P°) 4 17438.566
7278.24 W I 60 1 5d4.6s2 3D3 15460.01 5d4.6s.(6D).6p 52 29195.84
7278.258 O II - - 2s2.2p2.(3P).3d 4D5/2 232747.562 2s2.2p2.(3P).4p 43/2 246483.317
7278.56 Mn II 420 5 3d4.(5D).4s.4p.(3P°) w 51 86961.122 3d5.(6S).5d 5D1 100696.27
7278.718 Cr II 15 - 3d4.(5D).5p 63/2 93574.4177 3d4.(5D).5d 6F5/2 107309.3226
7278.74 Si III 40 - 3p.4s 31 226527.42 3s.6d 3D1 240262.28
7279.25 Sm I 225 3
7279.75 Xe II 35 - 5p4.(1D2).6p 2[2]°5/2 132207.76 5p4.(3P1).6d 2[2]3/2 145940.34
7279.8991 Cs I 1 - 5p6.5d 2D5/2 14596.84232 5p6.6f 25/2 28329.5133
7279.9568 Cs I 45 1 5p6.5d 2D5/2 14596.84232 5p6.6f 27/2 28329.4075
7279.9968 Rb I 450 5 4p6.5p 21/2 12578.95 4p6.7s 2S1/2 26311.437
7280.16 Mn II 330 4 3d4.(5D).4s.4p.(3P°) w 51 86961.122 3d5.(6S).5d 5D2 100693.31
7280.257 O II - - 2s2.2p2.(3P).3d 2D5/2 234454.634 2s2.2p2.(3P).4p 25/2 248186.64
7280.296 Ba I 2500 29 6s.5d 3D2 9215.501 5d.6p 33 22947.423
7280.44 W I 75 1 5d4.6s2 3F23 17701.18 5d4.6s.(6D).6p 54 31432.91
7280.454 Ar II 35 - 3s2.3p4.(3P).4p 21/2 161089.3846 3s2.3p4.(1D).3d 2P1/2 174821.0098
7280.748 Ti I 55 1 3d2.(3F).4s.4p.(1P°) y 35 27750.135 3d2.4s.(2F).5s 3F4 41481.207
7280.9 Te I 60 1
7281.257 Ti I 90 1 3d3.(2P).4s b 3P0 17995.487 3d2.(3P).4s.4p.(3P°) y 31 31725.605
7281.349 He I 70 1 1s.2p 11 171134.896946 1s.3s 1S0 184864.82932
7281.397 Cr II 10 - 3d4.(5D).5p 67/2 93966.4264 3d4.(5D).5d 6D9/2 107696.2552
7281.47 Sm II 60 1
7281.53 Eu I 45 1 4f7.(8S°).6s.6p.(1P°) y 8P5/2 21444.58 4f7.(8S°).5d2? 8P°?5/2 35174.2
7281.6256 Cr II 25 - 3d4.(5D).5p 67/2 93276.8352 3d4.(5D).5d 6G7/2 107006.2503
7281.74 Ti I 120 1 3d4 3H5 35400.235 3d3.(4F5/2).4f 2[11/2]°6 49129.444
7282.21 Sm I 45 1
7282.34 La II 495 6 5d2 a 3F4 1970.7 4f.(2F°7/2).6s1/2 (7/2,1/2)°4 15698.74
7282.35 In II 2 - 5s.7d 3D2 134744.019 5s.11f 32 148472.06
7282.5627 Fr I 2 - 6d 2D5/2 16429.64 11p 21/2 30161.07
7282.7 W I 70 1 5d4.6s2 3H5 15069.93 5d4.6s.(6D).6p 74 28797.24
7282.81 Si I 855 11
7282.96 P I 8 - 3s2.3p2.(3P).4p 47/2 65788.455 3s2.3p2.(3P).5d 4F7/2 79515.35
7282.98 W I 70 1
7283.33 Sm II 70 1
7283.51 Si III 40 - 3s.6p 32 234442.18 3p.4p 3P2 248168.04
7283.82 Mn I 2000 22
7283.961 Xe I 300 4 5p5.(2P°1/2).6s 2[1/2]°1 77185.041 5p5.(2P°3/2).4f 2[5/2]2 90910.052
7284.232 Ar II 90 1 3s2.3p4.(3P).3d 2P3/2 145668.8845 3s2.3p4.(3P).4p 23/2 159393.385
7284.28 Np I 300 4
7284.3 In II 2 - 5s.7d 3D2 134744.019 5s.11f 33 148468.39
7284.3 Tm I 60 1 4f13.(2F°7/2).6s.6p.(3P°2) (7/2,2)3/2 19132.245 4f13.(2F°5/2).5d.6s.(3D) 3[5/2]°5/2 32856.613
7284.34 Xe II 360 4 5p4.(3P1).5d 2[1]3/2 107904.5 5p4.(3P0).6p 2[1]°3/2 121628.82
7284.38 Cd II 15 - 4d10.6d 2D5/2 110247.6 4d10.6f 27/2 123972.1
7284.835 Fe I 15 - 3d8 c 3F3 33412.717 3d7.(4P).4p w 32 47136.084
7284.90314 Th I 45 1 6d2.7s2 2 3687.987189 6d.7s2.7p 33 17411.224415
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