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    • 2. 发明授权
    • Organic/inorganic composite superlattice type optical modulator
    • 有机/无机复合超晶格型光调制器
    • US6124964A
    • 2000-09-26
    • US086417
    • 1998-05-29
    • Yasuo ImanishiShingo IshiharaTomoyuki Hamada
    • Yasuo ImanishiShingo IshiharaTomoyuki Hamada
    • G02F1/35G02F1/017G02F1/355G02F1/03H01L35/24
    • G02F1/01716B82Y20/00G02F2202/02G02F2202/106G02F2202/107
    • In an organic/inorganic composite superlattice type optical modulator capable of entering/projecting light, and capable of modulating an optical characteristic such as transmittance, reflectivity, and a refractive index of light in response to an externally controlled electric field, or light, the organic/inorganic composite superlattice type optical modulator includes at least one type of a compound semiconductor layer and at least one type of an organic compound layer; the compound semiconductor layer and the organic compound layer are alternately stacked in greater than one period; at least one of the compound semiconductor layer and the organic compound layer being crystalline; and also a thickness of each of the layers is made larger than a Bohr radius of the compound semiconductor and smaller than 10 times the Bohr radius. As a result, this novel optical modulator can provide a high nonlinear characteristic by a semiconductor modulator, and a high response characteristic by an organic modulator.
    • 在能够进入/投射光并且能够响应于外部控制的电场或光而调制诸如透射率,反射率和光的折射率的光学特性的有机/无机复合超晶格型光学调制器中,有机 /无机复合超晶格型光调制器包括至少一种类型的化合物半导体层和至少一种类型的有机化合物层; 化合物半导体层和有机化合物层在大于一个周期内交替堆叠; 化合物半导体层和有机化合物层中的至少一个是结晶的; 并且每个层的厚度也被制成大于化合物半导体的玻尔半径并小于玻尔半径的10倍。 结果,这种新颖的光调制器可以通过半导体调制器提供高非线性特性,并通过有机调制器提供高响应特性。
    • 4. 发明申请
    • ORGANIC LIGHT-EMITTING DIODE AND LIGHT SOURCE DEVICE INCLUDING SAME
    • 有机发光二极管和光源装置,包括它们
    • US20110147777A1
    • 2011-06-23
    • US12962925
    • 2010-12-08
    • Akitoyo KonnoShingo IshiharaHiroshi Sasaki
    • Akitoyo KonnoShingo IshiharaHiroshi Sasaki
    • H01L51/50
    • H01L51/5275
    • An organic light-emitting diode in accordance with the present invention includes: a reflective electrode; an organic layer formed on the reflective electrode; a transparent electrode formed on the organic layer; a transparent resin layer formed on the transparent electrode; and an encapsulation glass formed on the transparent resin layer. The organic layer includes a light-emitting point. Cone- or pyramid-shaped transparent resin structures are provided in the transparent resin layer in such a manner that each of the cone- or pyramid-shaped transparent resin structures splays from the transparent resin layer toward the encapsulation glass in a normal direction of the encapsulation glass. A refractive index of the transparent resin layer is 1.3 times or more to 1.6 times or less as high as that of the cone- or pyramid-shaped transparent resin structures.
    • 根据本发明的有机发光二极管包括:反射电极; 形成在反射电极上的有机层; 形成在有机层上的透明电极; 形成在透明电极上的透明树脂层; 以及形成在透明树脂层上的封装玻璃。 有机层包括发光点。 在透明树脂层中设置锥形或棱锥状的透明树脂结构,使得锥形或棱锥形的透明树脂结构中的每一个在透明树脂层朝着封装玻璃沿着封装的法线方向 玻璃。 透明树脂层的折射率是锥形或棱锥形透明树脂结构的折射率的1.3倍以上至1.6倍以下。
    • 10. 发明授权
    • Organic light-emitting device and light source apparatus using same
    • 有机发光装置及使用该有机发光装置的光源装置
    • US08866131B2
    • 2014-10-21
    • US13639066
    • 2010-04-02
    • Shingo IshiharaHiroshi SasakiAkitoyo Konno
    • Shingo IshiharaHiroshi SasakiAkitoyo Konno
    • H01L35/24
    • H01L51/5265
    • An organic light-emitting device including a first substrate, a second substrate, a light drawing-out layer disposed between the first substrate and the second substrate, a transparent electrode disposed between the light drawing-out layer and the first substrate, a reflection electrode disposed between the transparent electrode and the first substrate, and a first light-emitting unit disposed between the transparent electrode and the reflection electrode. The first light-emitting unit includes a first light-emitting layer that emits a first light-emitting color. In the organic light-emitting device, relations of the equation L1≧λ2/4 and the equation L1 cos θ1=λ1 (¼+n/2) are satisfied, wherein L1 is an optical length from a light-emitting point in the first light-emitting layer to the reflection electrode, λ2 is a wavelength at the longer wavelength side, having an intensity of 1% of the maximum intensity of a light-emitting spectrum of the first light-emitting color, λ1 is a wavelength at the shorter wavelength side, having an intensity of 1% of the maximum intensity of the light-emitting spectrum of the first light-emitting color, n is an integer not less than 0, and 0
    • 一种有机发光装置,包括第一基板,第二基板,设置在第一基板和第二基板之间的光引出层,设置在光引出层和第一基板之间的透明电极,反射电极 设置在所述透明电极和所述第一基板之间,以及设置在所述透明电极和所述反射电极之间的第一发光单元。 第一发光单元包括发射第一发光颜色的第一发光层。 在有机发光装置中,满足方程式L1≥λ2/ 4和方程式L1 cos&amp; t; 1 =λ1(¼+ n / 2)的关系,其中L1是从发光点的光学长度 第一发光层到反射电极,λ2是较长波长侧的波长,其强度为第一发光颜色的发光光谱的最大强度的1%,λ1为 具有第一发光颜色的发光光谱的最大强度的1%的强度的较短波长侧,n为不小于0的整数,0 <1; n为1的整数。