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
4540.494 Ti I 105 50 3d2.4s2 a 3F4 386.874 3d2.(3F).4s.4p.(3P°) z 13 22404.739
4540.865 Ti I 85 43 3d3.(4F).4s b 3F3 11639.8109 3d3.(4F).4p w 32 33655.869
4541. Ti I 30 14 3d3.(2G).4s b 1G4 18287.554 3d3.(2D2).4p w 13 40302.957
4544.0164 Ti II 300 151 3d2.(3P).4s b 4P5/2 10024.8009 3d2.(3F).4p z 25/2 32025.5915
4544.314 Ti III 15 7 3p6.3d.5p 32 147931.47 3p6.3d.6s 3D2 169930.8
4544.45 Ti VIII 15 8 3s2.3p3 23/2 32190.5 3s2.3p3 21/2 54189.2
4544.687 Ti I 2500 1200 3d3.(4F).4s a 5F2 6598.765 3d3.(4F).4p y 51 28596.313
4545.1342 Ti II 255 125 3d3 a 2G9/2 9118.2849 3d2.(3F).4p z 47/2 31113.6764
4545.976 Ti III 35 17 3p6.3d.5p 33 147939.47 3p6.3d.6s 3D2 169930.8
4547.794 Ti I 195 98 3d2.(3F).4s.4p.(3P°) z 32 20006.039 3d2.4s.(4F).4d g 3F3 41988.5259
4548.11 Ti I 135 70 3d2.(3F).4s.4p.(3P°) z 33 20126.062 3d2.4s.(4F).4d g 3F4 42107.0545
4548.763 Ti I 2500 1293 3d3.(4F).4s a 5F3 6661.006 3d3.(4F).4p y 52 28638.841
4549.6216 Ti II 4500 2157 3d3 a 2H11/2 12774.8168 3d2.(3F).4p z 29/2 34748.5062
4549.8127 Ti II 165 81 3d3 a 4P5/2 9518.1516 3d2.(3F).4p z 27/2 31490.9177
4549.842 Ti III 85 43 3p6.3d.5p 33 147939.47 3p6.3d.5d 3F4 169912.11
4552.289 Ti II 45 23 3d3 a 2G7/2 8997.7874 3d2.(3F).4p z 45/2 30958.5846
4552.454 Ti I 3500 1735 3d3.(4F).4s a 5F4 6742.756 3d3.(4F).4p y 53 28702.778
4553.398 Ti I 135 69 3d2.(3F).4s.4p.(3P°) z 14 24694.892 3d2.4s.(2F).4d f 1F3 46650.398
4555.069 Ti I 270 134 3d2.(3F).4s.4p.(3P°) z 33 19421.58 3d2.4s.(2F).5s 3F3 41368.996
4555.456 Ti III 70 35 3p6.3d.4d 1G4 136339.74 3p6.3d.4f 14 158285.34
4555.484 Ti I 2500 1378 3d3.(4F).4s a 5F5 6842.962 3d3.(4F).4p y 54 28788.38
4555.777 Ti III 40 21 3p6.3d.5p 32 147931.47 3p6.3d.6s 3D1 169875.52
4557.854 Ti I 210 102 3d2.(3F).4s.4p.(3P°) z 31 19937.855 3d2.4s.(4F).4d g 3F2 41871.8642
4558.11 Ti I 255 125 3d3.(4P).4s c 3P2 18911.394 3d3.(4P).4p r 33 40844.151
4559.918 Ti I 660 333 3d3.(4F).4s b 3F4 11776.812 3d3.(4F).4p w 34 33700.884
4562.029 Ti II 8 4 3d2.(1G).4p z 211/2 45908.6592 3d2.(3F).4d e 2G9/2 67822.5867
4562.626 Ti I 270 136 3d2.4s2 a 3F3 170.1328 3d2.(3F).4s.4p.(3P°) z 12 22081.189
4563.423 Ti I 165 86 3d2.(3F).4s.4p.(3P°) z 34 19573.974 3d2.4s.(2F).5s 3F4 41481.207
4563.7575 Ti II 2500 1179 3d3 a 2P1/2 9851.0145 3d2.(3F).4p z 23/2 31756.6406
4564.213 Ti I 35 18 3d3.(4F).4s b 3F4 11776.812 3d3.(4F).4p w 33 33680.248
4565. Ti XXI 15 7 1s.4s 1S0 47351600 1s.4p 11 47373500
4566.651 Ti II 70 35 3d2.(3P).4p x 25/2 44902.4455 3d2.(3F).4d 2P3/2 66794.2052
4568.324 Ti II 165 84 3d2.(3P).4s b 4P1/2 9872.899 3d2.(3F).4p z 23/2 31756.6406
4570.8 Ti III 30 15 3p6.3d2 3P1 10603.6 3p6.3d2 1S0 32475.5
4570.902 Ti I 1000 602 3d2.(3F).4s.4p.(3P°) z 32 19322.984 3d2.4s.(2F).5s 3F2 41194.378
4571.9713 Ti II 10000 5077 3d3 a 2H9/2 12677.105 3d2.(3F).4p z 27/2 34543.3799
4572.064 Ti I 135 67 3d2.(3F).4s.4p.(3P°) z 32 20006.039 3d2.4s.(4F).4d g 3F2 41871.8642
4572.204 Ti III 225 114 3p6.3d.5p 32 147749.89 3p6.3d.5d 3F2 169615.12
4572.85 Ti III 15 8 3p6.3d.5p 31 148978.72 3p6.3d.5d 1D2 170840.8
4576.532 Ti III 120 63 3p6.3d.5p 34 148410.24 3p6.3d.6s 3D3 170254.75
4578.521 Ti III 105 54 3p6.3d.4d 1S0 140019.24 3p6.3d.4f 11 161854.24
4579.642 Ti III 85 43 3p6.3d.5p 33 147939.47 3p6.3d.5d 3F3 169769.13
4579.711 Ti II 55 28 3d2.(3P).4p y 45/2 40581.6301 3d2.(3F).5s e 4F7/2 62410.9628
4580.435 Ti II 95 50 3d2.(3P).4s b 4P3/2 9930.7766 3d2.(3F).4p z 23/2 31756.6406
4581.73 Ti III 95 49 3p6.3d.5p 33 148111.1 3p6.3d.6s 3D2 169930.8
4583.409 Ti II 165 86 3d3 a 4P3/2 9395.802 3d2.(3F).4p z 25/2 31207.5111
4586.917 Ti I 60 30 3d2.(3F).4s.4p.(3P°) z 34 19573.974 3d2.4s.(2F).5s 3F3 41368.996
4589.9466 Ti II 1500 736 3d3 a 2P3/2 9975.9994 3d2.(3F).4p z 23/2 31756.6406
4591.603 Ti I 55 28 3d2.(3F).4s.4p.(3P°) z 33 19421.58 3d2.4s.(2F).5s 3F2 41194.378
4595.5 Ti III 15 7 3p6.3d2 3P2 10721.2 3p6.3d2 1S0 32475.5
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