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    • 1. 发明授权
    • Optical coupling device
    • 光耦合装置
    • US08064741B2
    • 2011-11-22
    • US10584853
    • 2003-12-29
    • Matteo CherchiGiacomo Gorni
    • Matteo CherchiGiacomo Gorni
    • G02B6/26
    • G02B6/14G02B6/305G02B2006/12038G02B2006/12061
    • An optical mode converter has a coupling waveguide and a receiving waveguide. The coupling waveguide has at an input end a first effective refractive index and includes a tapered core of a substantially constant refractive index with a substantially square cross section at the input end, which has a size that tapers down moving away from the input end. The coupling waveguide also has a cladding at least partially surrounding the tapered core. The receiving waveguide has a second effective refractive index at an output end and includes a core of a substantially constant refractive index greater than the refractive index of the tapered core of the coupling waveguide and a cladding at least partially surrounding the core. A side surface of the tapered core of the coupling waveguide is optically in contact, in a coupling portion, with the receiving waveguide so as to allow optical coupling between the coupling waveguide and the receiving waveguide. The refractive index of the tapered core of the coupling waveguide is selected so that the first effective refractive index and the second effective refractive index differ from each other in absolute value less than 30% of the difference between the core refractive index and the effective refractive index of the receiving waveguide.
    • 光模式转换器具有耦合波导和接收波导。 耦合波导在输入端处具有第一有效折射率,并且包括基本上恒定的折射率的锥形芯,该输入端在输入端具有基本上正方形的横截面,其具有从输入端向下移动的尺寸。 耦合波导还具有至少部分围绕锥形芯的包层。 接收波导在输出端具有第二有效折射率,并且包括大于连接波导的锥形芯的折射率的基本恒定的折射率的芯和至少部分地围绕芯的包层。 耦合波导的锥形芯的侧表面在耦合部分中与接收波导光学地接触,以允许耦合波导和接收波导之间的光耦合。 选择耦合波导的锥形芯的折射率,使得第一有效折射率和第二有效折射率彼此之间的绝对值小于芯折射率与有效折射率之差的30% 的接收波导。
    • 2. 发明申请
    • Optical coupling device
    • 光耦合装置
    • US20090245728A1
    • 2009-10-01
    • US10584853
    • 2003-12-29
    • Matteo CherchiGiacomo Gorni
    • Matteo CherchiGiacomo Gorni
    • G02B6/26
    • G02B6/14G02B6/305G02B2006/12038G02B2006/12061
    • An optical mode converter has a coupling waveguide and a receiving waveguide. The coupling waveguide has at an input end a first effective refractive index and includes a tapered core of a substantially constant refractive index with a substantially square cross section at the input end, which has a size that tapers down moving away from the input end. The coupling waveguide also has a cladding at least partially surrounding the tapered core. The receiving waveguide has a second effective refractive index at an output end and includes a core of a substantially constant refractive index greater than the refractive index of the tapered core of the coupling waveguide and a cladding at least partially surrounding the core. A side surface of the tapered core of the coupling waveguide is optically in contact, in a coupling portion, with the receiving waveguide so as to allow optical coupling between the coupling waveguide and the receiving waveguide. The refractive index of the tapered core of the coupling waveguide is selected so that the first effective refractive index and the second effective refractive index differ from each other in absolute value less than 30% of the difference between the core refractive index and the effective refractive index of the receiving waveguide.
    • 光模式转换器具有耦合波导和接收波导。 耦合波导在输入端处具有第一有效折射率,并且包括基本上恒定的折射率的锥形芯,该输入端在输入端具有基本上正方形的横截面,其具有从输入端向下移动的尺寸。 耦合波导还具有至少部分围绕锥形芯的包层。 接收波导在输出端具有第二有效折射率,并且包括大于连接波导的锥形芯的折射率的基本恒定的折射率的芯和至少部分地围绕芯的包层。 耦合波导的锥形芯的侧表面在耦合部分中与接收波导光学地接触,以允许耦合波导和接收波导之间的光耦合。 选择耦合波导的锥形芯的折射率,使得第一有效折射率和第二有效折射率彼此之间的绝对值小于芯折射率与有效折射率之差的30% 的接收波导。
    • 3. 发明申请
    • Integrated optical device
    • 集成光器件
    • US20060140541A1
    • 2006-06-29
    • US10529223
    • 2002-09-27
    • Giacomo GorniMarco RomagnoliRiccardo TediosiDaniele Faccio
    • Giacomo GorniMarco RomagnoliRiccardo TediosiDaniele Faccio
    • G02B6/26
    • G02B6/29383G02B6/12007G02B6/124G02B6/29334
    • An integrated optical device having a first and a second integrated waveguide; a section of the first waveguide and a section of the second waveguide arranged so as to be in optical coupling relationship. A first and a second modulated refractive index structures are respectively formed along the first waveguide section and the second waveguide section. Each modulated refractive index structure has at least one pair of regions of mutually different refractive index, adjacent to each other along the respective waveguide section. The regions of mutually different refractive index have a portion of the respective waveguide section and a gap formed in the waveguide section. The refractive indexes of the regions differ from each other by least approximately 1.5%. The device can be used for optical multiplexers/demultiplexers, particularly for wavelength division multiplexing optical communications.
    • 一种具有第一和第二集成波导的集成光学器件; 所述第一波导的一部分和所述第二波导的一部分被布置为具有光耦合关系。 第一和第二调制折射率结构分别沿着第一波导部分和第二波导部分形成。 每个调制的折射率结构具有至少一对相互不同的折射率的区域,沿着相应波导部分彼此相邻。 相互不同的折射率的区域具有各个波导部分的一部分和形成在波导部分中的间隙。 该区域的折射率彼此相差至少约为1.5%。 该装置可以用于光复用器/解复用器,特别是用于波分复用光通信。
    • 4. 发明申请
    • Tunable resonant grating filters
    • 可调谐共振光栅滤波器
    • US20070071061A1
    • 2007-03-29
    • US10584507
    • 2003-12-24
    • Giulia PietraGiacomo Gorni
    • Giulia PietraGiacomo Gorni
    • H01S3/10H01S3/08
    • G02B6/12007G02B6/124G02F1/216G02F2201/302G02F2203/055G02F2203/15H01S3/08059H01S3/105H01S3/1055H01S5/12H01S5/141H01S5/142
    • A tunable resonant grating filter that can reflect optical radiation at a resonant wavelength, the resonant wavelength being selectively variable. The filter includes a diffraction grating, a planar waveguide, and a light transmissive material having a selectively variable refractive index to permit tuning of the filter, the light transmissive material forming a tunable cladding layer for the waveguide, preferably a liquid crystal material. The diffraction grating is placed on the opposite side of the tunable layer with respect to the planar waveguide, thereby making it possible to tailor the grating structural parameters to the desired bandwidth of the filter response without significantly affecting the tunability of the filter. Within the resonant structure, the core layer, i.e., the waveguide, can be placed close to the tunable layer either in direct contact with the tunable layer or with an interposed relatively thin intermediate layer(s) between the core and the tunable layer.
    • 可谐振光栅滤波器,可以反射谐振波长的光辐射,谐振波长是有选择性的。 滤光器包括衍射光栅,平面波导和具有选择性可变折射率以允许调谐滤光器的透光材料,所述透光材料形成用于波导的可调谐包覆层,优选为液晶材料。 衍射光栅相对于平面波导放置在可调谐层的相反侧,从而使得可以将光栅结构参数定制到滤波器响应的期望带宽,而不会显着影响滤波器的可调性。 在谐振结构内,芯层即波导可以靠近可调谐层放置,或者与可调谐层直接接触,或者在芯和可调谐层之间插入相对较薄的中间层。
    • 10. 发明授权
    • Device for the compensation of chromatic dispersion
    • 色散补偿装置
    • US06928221B2
    • 2005-08-09
    • US10332950
    • 2001-07-05
    • Giacomo GorniMarc RomagnoliLuciano Socci
    • Giacomo GorniMarc RomagnoliLuciano Socci
    • G02B6/02H04B10/2525G02B6/20G02B6/22
    • G02B6/02347G02B6/02261G02B6/0228H04B10/2525
    • A compensating optical fiber length having a negative chromatic dispersion slope, the compensating optical fiber having a core region surrounded by a cladding region, the cladding region defining a first ring of holes, which substantially defines, around the core region an annulus with an inner radius r1 and an outer radius r2, and at least one second ring of holes that surrounds the first ring of holes, the holes running along the compensating optical fiber longitudinally and being spaced apart from each other substantially according to a predefined pitch Λ, wherein a) r1≦λ/n≦r2 where n is the refractive index of the material making up the core region of the compensating optical fiber length; b) the holes of the first and the at least one second ring are substantially of the same diameter d; and c) the ratio d/Λ substantially satisfies the following relationship (A) 0.8≦d/Λ
    • 具有负色散斜率的补偿光纤长度,所述补偿光纤具有由包层区域包围的纤芯区域,所述包层区域限定第一环孔,所述第一环孔基本上限定在所述芯区域周围的具有内半径 r 1和外半径r 2以及围绕第一环孔的至少一个第二环孔,所述孔沿着补偿光纤纵向延伸并且基本上按照预定间距Lambda彼此间隔开,其中 a)r 1 <=λ/ n <= r 2其中n是构成补偿光纤长度的核心区域的材料的折射率; b)第一和第二环的孔基本上具有相同的直径d; 和c)比率d /λ基本上满足以下关系式(A)0.8 <= d /λ1。