Linked from
The 63 pages that link to Fluorescence, each with the reason it gives.
ChromophoreRelated: Some chromophores fluoresce after absorbing light, enabling imaging and sensing.
Energy levelRelated: Radiative transitions between molecular levels produce its emitted light.
UltravioletRelated: Ultraviolet excitation makes otherwise hidden fluorescent materials visible.
PhosphorRelated: Many phosphors fluoresce, converting absorbed energy into prompt emission.
FluoriteRelated: Some fluorite specimens glow under ultraviolet light, giving fluorescence its name.
Excited stateRelated: Fluorescence records radiative relaxation from excited states.
PhotobleachingRelated: Photobleaching is observed as the loss of a fluorophore’s emitted light.
Sanger sequencingRelated: Distinct fluorescent labels identify the terminal base of each fragment.
AcridineRelated: Acridine and several derivatives emit light after absorbing ultraviolet radiation.
Sir George StokesRelated: Stokes investigated this phenomenon and its change in wavelength.
TugtupiteRelated: Many tugtupite specimens fluoresce, adding to their appeal as collector minerals.