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
4913.615 Ti I 1000 817 3d3.(2G).4s a 3G3 15108.111 3d3.(2G).4p y 34 35454.052
4914.315 Ti III 10 9 3p6.3d.5p 31 147562.14 3p6.3d.5d 3D1 167905.19
4915.23 Ti I 315 231 3d3.(2G).4s a 3G5 15220.393 3d3.(2G).4p y 35 35559.648
4916.85 Ti II 15 10 3d2.(3F).4s a 2F5/2 4628.6571 3d.4s2 c 2D3/2 24961.191
4917.781 Ti I 15 11 3d2.(3F).4s.4p.(3P°) z 34 21588.495 3d2.4s.(4F).4d e 5H4 41917.1924
4919.861 Ti I 1500 968 3d3.(2D2).4s a 3D2 17423.856 3d3.(2D2).4p u 33 37743.962
4921.765 Ti I 1500 1159 3d3.(2D2).4s a 3D3 17540.188 3d3.(2D2).4p u 34 37852.437
4925.4 Ti I 285 209 3d3.(2G).4s a 3G4 15156.802 3d3.(2G).4p y 34 35454.052
4925.89 Ti II 10 8 3d2.(3F).4s a 2F7/2 4897.7179 3d.4s2 c 2D5/2 25192.965
4926.151 Ti I 225 166 3d3.(4F).4s a 5F2 6598.765 3d2.(1D).4s.4p.(3P°) x 33 26892.936
4928.337 Ti I 990 733 3d3.(2G).4s b 1G4 18287.554 3d3.(2H).4p z 35 38572.699
4928.878 Ti I 20 14 3d3.(4F).4s a 5F4 6742.756 3d2.(1D).4s.4p.(3P°) x 34 27025.659
4929.533 Ti III 10 8 3p6.3d.5p 32 147749.89 3p6.3d.5d 3D2 168030.15
4930.735 Ti III 10 8 3p6.3d.5p 32 147931.47 3p6.3d.5d 3D3 168206.79
4932.674 Ti III 9 7 3p6.3d.5p 33 147939.47 3p6.3d.5d 3D3 168206.79
4937.727 Ti I 180 138 3d3.(4F).4s a 5F1 6556.833 3d2.(1D).4s.4p.(3P°) x 32 26803.42
4938.036 Ti I 8 6 3d2.(3F).4s.4p.(3P°) z 54 16106.076 3d2.4s.(4F).5s e 5F5 36351.365
4938.291 Ti I 420 319 3d3.(2H).4s a 1H5 20795.603 3d3.(2H).4p y 15 41039.87
4940.969 Ti I 25 18 3d2.(3F).4s.4p.(3P°) z 53 15975.631 3d2.4s.(4F).5s e 5F4 36208.929
4941.306 Ti I 25 18 3d3.(4F).4s a 5F3 6661.006 3d2.(1D).4s.4p.(3P°) x 33 26892.936
4941.569 Ti I 180 136 3d3.(2D2).4s a 3D2 17423.856 3d3.(2D2).4p u 32 37654.69
4943.066 Ti I 15 9 3d2.4s2 a 1D2 7255.355 3d2.(1D).4s.4p.(3P°) x 33 27480.066
4944.04 Ti III 15 10 3p6.3d.5p 32 147931.47 3p6.3d.5d 3G3 168152.2
4944.351 Ti I 35 25 3d2.(3F).4s.4p.(3P°) z 33 19421.58 3d3.(4F).5s f 3F3 39641.021
4946. Ti III 9 7 3p6.3d.5p 33 147939.47 3p6.3d.5d 3G3 168152.2
4946.186 Ti I 9 7 3d2.(3F).4s.4p.(3P°) z 34 19573.974 3d3.(4F).5s f 3F4 39785.923
4947.97 Ti I 55 42 3d3.(4F).4s a 5F2 6598.765 3d2.(1D).4s.4p.(3P°) x 32 26803.42
4948.188 Ti I 100 73 3d3.(2D2).4s a 3D3 17540.188 3d3.(2D2).4p u 33 37743.962
4950.104 Ti III 15 12 3p6.3d.5p 33 148111.1 3p6.3d.5d 3G4 168307.06
4958.277 Ti I 135 104 3d2.4s2 a 1D2 7255.355 3d2.(1D).4s.4p.(3P°) x 32 27418.029
4960.1 Ti III 3 3 3p6.3d.5p 32 147749.89 3p6.3d.5d 3D1 167905.19
4961.36 Ti III 10 9 3p6.3d.4d 1P1 129253.41 3p6.3d.5p 11 149403.52
4963.65 Ti III 2 1 3p6.3d.4d 1F3 127790.57 3p6.3d.5p 32 147931.47
4964.716 Ti I 240 183 3d2.(3F).4s.4p.(3P°) z 52 15877.081 3d2.4s.(4F).5s e 5F2 36013.597
4966.028 Ti I 45 35 3d3.(2D2).4s a 3D2 17423.856 3d3.(2G).4p v 33 37555.058
4967.299 Ti I 35 28 3d2.4s2 a 3F2 0 3d2.(3F).4s.4p.(3P°) z 33 20126.062
4968.568 Ti I 330 247 3d2.(3F).4s.4p.(3P°) z 53 15975.631 3d2.4s.(4F).5s e 5F3 36096.542
4970.156 Ti I 5 4 3d3.(2D2).4s a 3D3 17540.188 3d3.(2D2).4p u 32 37654.69
4971.194 Ti III 10 9 3p6.3d.5p 34 148410.24 3p6.3d.5d 3G5 168520.52
4973.029 Ti I 225 172 3d2.(3F).4s.4p.(3P°) z 54 16106.076 3d2.4s.(4F).5s e 5F4 36208.929
4974.79 Ti III 2 2 3p6.3d.5p 33 148111.1 3p6.3d.5d 3D3 168206.79
4975.342 Ti I 570 443 3d3.(2D2).4s b 1D2 20209.447 3d3.(2D2).4p w 13 40302.957
4976.04 Ti III 4 3 3p6.3d.5p 33 147939.47 3p6.3d.5d 3D2 168030.15
4977.728 Ti I 285 216 3d2.(3F).4s.4p.(3P°) z 55 16267.48 3d2.4s.(4F).5s e 5F5 36351.365
4978.187 Ti I 840 643 3d2.(3F).4s.4p.(3P°) z 52 15877.081 3d2.4s.(4F).5s e 5F1 35959.109
4979.257 Ti I 50 37 3d3.(2D2).4s a 3D3 17540.188 3d3.(2G).4p v 34 37617.894
4981.355 Ti II 15 13 3d3 b 2D23/2 12628.8455 3d2.(3F).4p z 45/2 32698.1022
4981.731 Ti I 5000 3935 3d3.(4F).4s a 5F5 6842.962 3d3.(4F).4p y 56 26910.709
4982.79 Ti II 20 14 3d2.(3F).4s a 2F7/2 4897.7179 3d.4s2 c 2D3/2 24961.191
4983.1554 Ti II 135 101 3d.(2D).4s.4p.(3P°) y 43/2 56249.2448 3d2.(3P).4d 4F5/2 76311.242
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