摘要:
The invention relates to a solid-state laser device (1) comprising a gain medium (10) essentially having a main phase of a solid state host material (15) which is doped with rare-earth ions. According to the invention at least a portion of the rare-earth ions are Ce3+-ions (19) with at least one 4f-state (16, 17) and at least one 5d-band (18) energetically between the highest valence state and the lowest conduction state of the host material (15), wherein the highest 4f-state (17) and the bottom edge of the 5d-band (18) have a first energy-level distance (Δ1) and the lowest 4f-state (16) and the upper edge of the 5d-band (18) have a second energy-level distance (Δ2), wherein the host material (15) is selected such that the resulting gain medium (10) has an energy range (20) devoid of unoccupied states for disabling excited state absorption, the energy range (20) is located between a lower energy (21) which is by the value of the first energy level distance (Δ1) above the bottom edge of the 5d-band (18) and a higher energy (22) which is by the value of the second energy level distance (Δ2) above the upper edge of the 5d-band (18). The invention further relates to a corresponding lighting system comprising at least one solid-state laser device (1).
摘要:
A method 200 of manufacturing a (part of) color ring is provided. The color ring converts a color of light emitted by a light emitter into at least one other color. The method (200) comprising the steps of: i) pressing (102) a first ring body of a first granulated precursor comprising a first luminescent material for converting the color of the light of the light emitter into a first one of the at least one other color, and ii) sintering (104) the first ring body for obtaining a first ceramic ring. The color ring comprises at least a segment of the first ceramic ring. Further, the method may comprises the steps of: iii) pressing (208) a second ring body of a second granulated precursor, wherein the first luminescent material is absent, iv) sintering (210) the second ring body for obtaining a second ceramic ring, v) segmenting (206) the first ceramic rings in at least two parts and segmenting (212) the second ceramic ring in at least two parts, and vi) forming (214) at least a part of the color ring by coupling a part of the first ceramic ring and a part of the second ceramic ring.
摘要:
A method 200 of manufacturing a (part of) color ring is provided. The color ring converts a color of light emitted by a light emitter into at least one other color. The method (200) comprising the steps of: i) pressing (102) a first ring body of a first granulated precursor comprising a first luminescent material for converting the color of the light of the light emitter into a first one of the at least one other color, and ii) sintering (104) the first ring body for obtaining a first ceramic ring. The color ring comprises at least a segment of the first ceramic ring. Further, the method may comprises the steps of: iii) pressing (208) a second ring body of a second granulated precursor, wherein the first luminescent material is absent, iv) sintering (210) the second ring body for obtaining a second ceramic ring, v) segmenting (206) the first ceramic rings in at least two parts and segmenting (212) the second ceramic ring in at least two parts, and vi) forming (214) at least a part of the color ring by coupling a part of the first ceramic ring and a part of the second ceramic ring.
摘要:
The invention relates to a lighting (1) device comprising a light source (2) and a wavelength converting element (7), which comprises a phosphor compounded with a polymer. The phosphor contains a metal-ion activator which is excitable via a partially forbidden electronic transition. The phosphor and the polymer being chosen such that the difference in their refractive index is smaller than 0.1. Due to this choice, scattering in the wavelength converting element (7) remains at minimum. Interesting wavelength converting elements (7) are obtained when using phosphors comprising specific Mn(IV)-activated fluoride compounds and specific fluorine-containing polymers.
摘要:
The invention relates to a lighting (1) device comprising a light source (2) and a wavelength converting element (7), which comprises a phosphor compounded with a polymer. The phosphor contains a metal-ion activator which is excitable via a partially forbidden electronic transition. The phosphor and the polymer being chosen such that the difference in their refractive index is smaller than 0.1. Due to this choice, scattering in the wavelength converting element (7) remains at minimum. Interesting wavelength converting elements (7) are obtained when using phosphors comprising specific Mn(IV)-activated fluoride compounds and specific fluorine-containing polymers.
摘要:
The invention relates to a novel red emitting material of (Ba1—x—y—zSrxCayEuz)2Si5—a−bAlaN8−a−4bOa+4b having an average particle size distribution d50 of >6 μm, with 0.3≦x≦0.9, 0.01≦y≦0.1, 0.005≦z≦0.04, 0≦a≦0.2 and 0≦b≦0.2.
摘要:
The invention relates to a novel red emitting material of (Ba1—x—y—zSrxCayEuz)2Si5—a−bAlaN8'a−4bOa+4b having an average particle size distribution d50 of >6 μm, with 0.3≦x≦0.9, 0.01≦y≦0.1, 0.005≦z≦0.04, 0≦a≦0.2 and 0≦b≦0.2.
摘要翻译:本发明涉及平均粒度分布d50>6μm的(Ba1-xy-zSrxCayEuz)2Si5-a-bAlaN8'a-4bOa + 4b的新型红色发射材料,其中0.3≤x≤0.9,0.01@y @ 0.1,0.005 @ z @ 0.04,0 @ a @ 0.2和0 @ b @ 0.2。
摘要:
The invention provides a lighting unit comprising a light source, configured to generate light source light and a luminescent material, configured to convert at least part of the light source light into luminescent material light, wherein the light source comprises a light emitting diode (LED) and wherein the luminescent material comprises a phosphor comprising M2AX6 doped with tetravalent manganese, wherein M comprises monovalent cations, at least comprising potassium and rubidium, wherein A comprises a tetravalent cation, at least comprising silicon, wherein X comprises a monovalent anion, at least comprising fluorine, and wherein M2AX6 has the hexagonal phase.
摘要:
The invention is directed to a light emitting comprising a blue emitting LED, a first phosphor layer exited at the emitting wavelength of the LED, which phosphor has an emission wavelength within a range of between 500 nm and 560 nm, and a second phosphor layer having a color point u′ in the range between 0.24 and 0.35 and a peak emission of the phosphor layer of λp>600 nm of the emission spectra, especially a pcLED comprising a combination of a green emitting luminescent ceramic material and a second phosphor material having a broad emission spectra. The second phosphor material can comprise a compound of the general formula M1-x-y-zSi1+zAl1−zN3−zOz:Eu2+xCe2+y, whereby M is selected from the group consisting of Ca, Sr or mixtures thereof and 0.0001≦x≦0.005; 0.001≦y≦0.05 and 0≦z≦0.25.
摘要:
The invention relates to an improved red light emitting material of the formula MLi2−yMgySi2−x−yAx+yN4−xOx:RE. (M=alkaline earth element, A=Al, Ga, B). This material crystallizes in a cubic structure type, making it useful for many applications.