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    • 1. 发明申请
    • INTEGRATED OPTICS FILTERING COMPONENT COMPRISING AN OPTICAL CLADDING AND METHOD FOR MAKING SAME
    • 包含光学遮蔽的集成光学滤波组件及其制造方法
    • WO2004057388A2
    • 2004-07-08
    • PCT/FR0350175
    • 2003-12-15
    • TEEM PHOTONICSMARTINEZ CHRISTOPHE
    • MARTINEZ CHRISTOPHE
    • G02B6/12G02B6/124G02B6/134
    • G02B6/12004G02B6/124G02B6/1345G02B6/1347G02B2006/12185
    • The invention concerns an integrated optics filtering component comprising in a substrate (10) at least one filtering assembly including an optical guide core (11), an optical cladding (13) independent of the core and at least two elementary interaction zones in series (Z1, Z2, Z3), each elementary interaction zone having at least one structural parameter different from that or those whereto it is adjacent, each elementary interaction zone being defined by one substrate zone including an elementary grating (R1, R2, R3), at least one portion of the cladding called elementary cladding (G1, G2, G3) enclosing at least one core portion, called elementary core, the refractive index of each elementary cladding being different from the substrate refractive index and lower than the core refractive index, the different elementary gratings of a filtering assembly forming one grating.
    • 本发明涉及一种集成光学滤波组件,其包括在基板(10)中的至少一个滤光组件,所述滤光组件包括光导芯(11),独立于芯的光学包层(13)和串联的至少两个基本相互作用区(Z1 ,Z2,Z3),每个基本相互作用区域具有至少一个与之相邻的结构参数或与之相邻的结构参数,每个基本相互作用区域至少包括基本光栅(R1,R2,R3) 包层的一部分称为包围至少一个核心部分(称为基本核心)的基本包层(G1,G2,G3),每个基本包层的折射率不同于基板折射率并低于芯折射率,不同的 形成一个光栅的过滤组件的基本光栅。
    • 4. 发明专利
    • FR2839559B1
    • 2004-11-05
    • FR0205843
    • 2002-05-13
    • TEEM PHOTONICS
    • MARTINEZ CHRISTOPHEBARBIER DENIS
    • G02B6/12G02B6/124G02B6/134G02B6/293H04J14/02
    • Multiplexer/Demultiplexer comprises a substrate (18), at least n (n = a whole number of at least 2) cores (23, 25) of guides, and at least one optical cladding (20) surrounding at least one portion of each of the n cores so as to define interaction zones (I1, I2) comprising diffraction gratings (R1, R2). The multiplexer/demultiplexer has at least n inputs/outputs (P1, P2, P3). Preferred Device: Each core (23, 25) has two ends, and the n inputs/outputs are formed by at least one end of each core (23, 25). The cladding (20) has a refractive index that is greater than that of the substrate (18) at least in the interaction zones (I1, I2). The diffraction grating (R1, R2) of an interaction zone (I1, I2) can be formed in the core corresponding to the zone (I1, I2) and/or in the cladding (20). The diffraction gratings can be periodic or pseudo-periodic and/or comprise a succession of diffraction gratings. The interaction zones (I1, I2) in the same cladding can be in series or in parallel. The multiplexer/demultiplexer can comprise an optical cladding and n cores of an optical guide, where the optical cladding surrounds each core in a distinct interaction zone, so as to form n interaction zones in series. The multiplexer/demultiplexer can comprise m optical claddings, where each optical cladding (i) surrounds ni cores, (i = a whole number 1-m) in distinct interaction zones, so as to form ni interaction zones in series per cladding (i), and each optical cladding has at least one interaction zone whose core is common with the interaction zone of another cladding. The multiplexer/demultiplexer can comprise an optical cladding and n cores, where the optical cladding surrounds each core in a distinct interaction zone, so as to form n interaction zones in parallel. The multiplexer/demultiplexer can comprise an optical cladding and n cores, where the optical cladding surrounds each core so as to form with each core one or more interaction zones in series, and with the different cores of the interaction zones in parallel. An Independent claim is given for a method for production of the invented multiplexer/demultiplexer..
    • 9. 发明专利
    • Integrated optical wavelength multiplexer/demultiplexer has an optical cladding surrounding at least one portion of each core so as to define interaction zones comprising diffraction gratings
    • FR2839559A1
    • 2003-11-14
    • FR0205843
    • 2002-05-13
    • TEEM PHOTONICS
    • MARTINEZ CHRISTOPHEBARBIER DENIS
    • G02B6/12G02B6/124G02B6/134G02B6/293H04J14/02
    • Multiplexer/Demultiplexer comprises a substrate (18), at least n (n = a whole number of at least 2) cores (23, 25) of guides, and at least one optical cladding (20) surrounding at least one portion of each of the n cores so as to define interaction zones (I1, I2) comprising diffraction gratings (R1, R2). The multiplexer/demultiplexer has at least n inputs/outputs (P1, P2, P3). Preferred Device: Each core (23, 25) has two ends, and the n inputs/outputs are formed by at least one end of each core (23, 25). The cladding (20) has a refractive index that is greater than that of the substrate (18) at least in the interaction zones (I1, I2). The diffraction grating (R1, R2) of an interaction zone (I1, I2) can be formed in the core corresponding to the zone (I1, I2) and/or in the cladding (20). The diffraction gratings can be periodic or pseudo-periodic and/or comprise a succession of diffraction gratings. The interaction zones (I1, I2) in the same cladding can be in series or in parallel. The multiplexer/demultiplexer can comprise an optical cladding and n cores of an optical guide, where the optical cladding surrounds each core in a distinct interaction zone, so as to form n interaction zones in series. The multiplexer/demultiplexer can comprise m optical claddings, where each optical cladding (i) surrounds ni cores, (i = a whole number 1-m) in distinct interaction zones, so as to form ni interaction zones in series per cladding (i), and each optical cladding has at least one interaction zone whose core is common with the interaction zone of another cladding. The multiplexer/demultiplexer can comprise an optical cladding and n cores, where the optical cladding surrounds each core in a distinct interaction zone, so as to form n interaction zones in parallel. The multiplexer/demultiplexer can comprise an optical cladding and n cores, where the optical cladding surrounds each core so as to form with each core one or more interaction zones in series, and with the different cores of the interaction zones in parallel. An Independent claim is given for a method for production of the invented multiplexer/demultiplexer..