Chinese Physics Letters · 2004 · 37 citations · 31 references
PhotonicsOptical MaterialsEngineeringPhysicsOptical PropertiesOptical GlassLuminescent GlassApplied PhysicsLaser ApplicationsFrequency Upconversion EmissionPotential Upconversion LasersGlass PhotonicsUpconversion LuminescenceEr3+-doped Strontium–lead–bismuth GlassesEnergy MatchingOptoelectronicsHigh-power Lasers
Er3+-doped strontium–lead–bismuth glasses for developing potential upconversion lasers have been fabricated and characterized. Under 975 nm excitation, intense green and red emissions centred at 525, 546, and 657 nm, corresponding to the transitions 2H11/2→4I15/2, 4S3/2→4I15/2, and 4F9/2→4I15/2, respectively, were observed at room temperature. The upconversion mechanisms are discussed based on the energy matching and quadratic dependence on excitation power, and the dominant mechanisms are excited state absorption and energy transfer upconversion for 525 and 546 nm emissions, and energy transfer upconversion for 657 nm emission.
31
Optical Absorption Intensities of Rare-Earth Ions
B. R. Judd · Physical Review · 1962 · 7.9K citations · Full text
Rare Earth Mineral, Optical Absorption Intensities, Nuclear Physics +12
Modulation of Insulin Activities by Leptin
Batya Cohen, Daniela Novick, Menachem Rubinstein · Science · 1996 · 722 citations
Photon avalanche upconversion in rare earth laser materials
M.‐F. Joubert · Optical Materials · 1999 · 447 citations
Upconversion processes in coupled ion systems
F. Auzel · Journal of Luminescence · 1990 · 370 citations