Patents by Inventor Shinichi Aozasa
Shinichi Aozasa has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250141174Abstract: The present disclosure is an optical fiber amplifier including: an amplification optical fiber doped with a rare earth element, in which a pump light combiner for injecting multimode pump light into a cladding region of the amplification optical fiber is connected to an input end or an output end of the amplification optical fiber, and a reflective device for reflecting the pump light and transmitting signal light is connected to an end part, of the amplification optical fiber, to which the pump light combiner is not connected.Type: ApplicationFiled: February 17, 2022Publication date: May 1, 2025Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Taiji SAKAMOTO, Ryota IMADA, Shinichi AOZASA, Kazuhide NAKAJIMA
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Publication number: 20250118941Abstract: An optical amplifier of the present disclosure includes a rare-earth doped fiber including a plurality of cores, in which a v value of the plurality of cores of the rare-earth doped fiber is less than 2.405, the plurality of cores has a core pitch of a normalized coupling coefficient of 1.0×10?3 or more, and on injection of excitation light into a clad part of the rare-earth doped fiber in a state of being bent at a predetermined bending radius, propagating light in the rare-earth doped fiber is amplified with mode-dependent gain characteristics dependent on the bending radius.Type: ApplicationFiled: February 3, 2022Publication date: April 10, 2025Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Ryota IMADA, Taiji SAKAMOTO, Shinichi AOZASA, Kazuhide NAKAJIMA
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Publication number: 20250105578Abstract: An amplification optical fiber according to the present disclosure is an amplification optical fiber doped with a rare earth element, the amplification optical fiber including: a first cladding enclosing cores of the amplification optical fiber; and a second cladding enclosing the first cladding, in which the two or more cores are disposed inside the first cladding in a cross section of the amplification optical fiber, and a core cladding ratio Rcc, which is a ratio of a sum of areas of the two or more cores to a sum of areas of the two or more cores and the first cladding in the cross section of the amplification optical fiber, is 0.0095<Rcc<0.11.Type: ApplicationFiled: February 17, 2022Publication date: March 27, 2025Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Taiji SAKAMOTO, Ryota IMADA, Shinichi AOZASA, Kazuhide NAKAJIMA
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Patent number: 12181706Abstract: An object is to provide a multi-core configuration for acquiring a random mode coupling in a case of an arbitrary core refractive index. A multi-core optical fiber according to the present invention is an optical fiber in which two or more core regions are arranged in a clad region having a refractive index at a minimum core interval ? smaller than a refractive index of the cores, a configuration of the cores is that including one propagation mode, and the core configuration and the core interval are adjusted so that an inter-mode coupling coefficient between adjacent cores is within a range from 0.73 to 120 m?1.Type: GrantFiled: April 6, 2020Date of Patent: December 31, 2024Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Taiji Sakamoto, Kazuhide Nakajima, Masaki Wada, Shinichi Aozasa, Takashi Yamamoto
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Patent number: 12174413Abstract: Provided are an LPFG and an optical transmission system in which a mode conversion amount does not depend on a polarization state and an electric field distribution. The LPFG according to the present invention includes cavity rows (25-1 and 25-2) of cavities 15 periodically arranged in a core region 11 of the few-mode fiber 10 at a position away from a central axis z of the core region 11 in parallel with the central axis z. Each of the cavity rows (25-1 and 25-2) is located at a different position in a longitudinal direction of the few-mode fiber 10 (where the position in a z direction is different), and the cavity rows (25-1 and 25-2) are located at positions shifted by 90° on a cross section of the core region 11 with the center of the cross section of the core region 11 (the intersection of an x-axis and a y-axis) as an origin.Type: GrantFiled: September 9, 2020Date of Patent: December 24, 2024Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Ryota Imada, Yoko Yamashita, Takashi Matsui, Taiji Sakamoto, Nobutomo Hanzawa, Noriyuki Araki, Shinichi Aozasa, Yuto Sagae, Kazuhide Nakajima
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Publication number: 20240072507Abstract: The purpose of the present invention is to provide an optical fiber amplifier capable of seamlessly and collectively amplifying optical signals in a plurality of bands. In order to achieve the aforementioned purpose, the optical fiber amplifier according to the present invention is the optical fiber amplifier that amplifies multiple wavelength bands, and in cross-section, one signal light primary propagation region, and a doped region where rare-earth ions have been added, wherein the doped region includes the rare-earth-doped optical fiber existing other than the propagation region.Type: ApplicationFiled: January 21, 2021Publication date: February 29, 2024Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi AOZASA, Taiji SAKAMOTO, Kazuhide NAKAJIMA, Takashi MATSUI
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Publication number: 20230336338Abstract: It is an object of the present disclosure to reduce the risk of information exploitation by a malicious third party while allowing communication data to be demodulated in real time.Type: ApplicationFiled: June 11, 2020Publication date: October 19, 2023Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Yuto SAGAE, Kazuhide NAKAJIMA, Taiji SAKAMOTO, Nobutomo HANZAWA, Takashi MATSUI, Noriyuki ARAKI, Shinichi AOZASA, Ryota IMADA, Yoko YAMASHITA
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Publication number: 20230324604Abstract: Provided are an LPFG and an optical transmission system in which a mode conversion amount does not depend on a polarization state and an electric field distribution. The LPFG according to the present invention includes cavity rows (25-1 and 25-2) of cavities 15 periodically arranged in a core region 11 of the few-mode fiber 10 at a position away from a central axis z of the core region 11 in parallel with the central axis z. Each of the cavity rows (25-1 and 25-2) is located at a different position in a longitudinal direction of the few-mode fiber 10 (where the position in a z direction is different), and the cavity rows (25-1 and 25-2) are located at positions shifted by 90° on a cross section of the core region 11 with the center of the cross section of the core region 11 (the intersection of an x-axis and a y-axis) as an origin.Type: ApplicationFiled: September 9, 2020Publication date: October 12, 2023Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Ryota IMADA, Yoko YAMASHITA, Takashi MATSUI, Taiji SAKAMOTO, Nobutomo HANZAWA, Noriyuki ARAKI, Shinichi AOZASA, Yuto SAGAE, Kazuhide NAKAJIMA
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Publication number: 20220344888Abstract: An objective of the present invention is to provide an amplification fiber having a cladding excitation configuration that improves amplification efficiency and an optical amplifier. An amplification fiber (10) according to the present invention is a multi-core amplification fiber having, from one end (E1) to the other end (EE), a plurality of cores (11b) in a cladding (11a), and a total distance from the one end (E1) to the other end (EE) in which rare earth ions are doped differs depending on the types of cores (11b). The cores (11b) are preferably disposed such that the cores of the same type are not adjacent to each other. By arranging the types of the cores in this manner, requirements for inter-core crosstalk can be mitigated since the bands of signal light in the adjacent cores are different. As a result, a density of cladding excitation light can be increased by shortening the inter-core distance, and thus the amplification efficiency can be improved.Type: ApplicationFiled: September 26, 2019Publication date: October 27, 2022Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi AOZASA, Taiji SAKAMOTO, Kazuhide NAKAJIMA, Masaki WADA
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Publication number: 20220337016Abstract: An objective is to provide an optical amplifier having a core excitation configuration that improves amplification efficiency. An optical amplifier according to the present invention includes an excitation light conversion fiber 11 that absorbs first excitation light L1 propagating in a cladding and having a first wavelength and emits, into a core, spontaneous emission light having a second wavelength, an oscillator 12 for causing the spontaneous emission light to be reflected on two reflectors 15 to reciprocate the light within the core of the excitation light conversion fiber 11 and laser-oscillating second excitation light L2 having the second wavelength, and an amplification fiber 13 that is connected to the excitation light conversion fiber 11 and amplifies signal light with the second excitation light L2 supplied from the excitation light conversion fiber 11 to the core.Type: ApplicationFiled: September 26, 2019Publication date: October 20, 2022Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi AOZASA, Taiji SAKAMOTO, Kazuhide NAKAJIMA, Masaki WADA
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Publication number: 20220337025Abstract: An objective of the present invention is to provide an optical amplifier having a cladding excitation configuration that improves amplification efficiency.Type: ApplicationFiled: September 26, 2019Publication date: October 20, 2022Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi AOZASA, Taiji SAKAMOTO, Kazuhide NAKAJIMA, Masaki WADA
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Publication number: 20220337020Abstract: An object is to provide an optical amplifier with a cladding pumped configuration that improves amplification efficiency. The optical amplifier according to the present invention includes a pump light conversion fiber 11 that converts first pump light L1 with a first wavelength propagating in a cladding into second pump light L2 with a second wavelength, an amplification fiber 13 that is connected to the pump light conversion fiber 11 and optically amplifies signal light Ls with the second pump light L2 supplied to the cladding from the pump light conversion fiber 11, and an oscillator 12 that causes the second pump light L2 to be reflected on two reflectors 15 and to reciprocate within the claddings of the pump light conversion fiber 11 and the amplification fiber 13 to cause laser oscillation of the second pump light L2.Type: ApplicationFiled: September 26, 2019Publication date: October 20, 2022Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi AOZASA, Taiji SAKAMOTO, Kazuhide NAKAJIMA, Masaki WADA
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Publication number: 20220214496Abstract: An object is to provide a multi-core configuration for acquiring a random mode coupling in a case of an arbitrary core refractive index. A multi-core optical fiber according to the present invention is an optical fiber in which two or more core regions are arranged in a clad region having a refractive index at a minimum core interval ? smaller than a refractive index of the cores, a configuration of the cores is that including one propagation mode, and the core configuration and the core interval are adjusted so that an inter-mode coupling coefficient between adjacent cores is within a range from 0.73 to 120 m?1.Type: ApplicationFiled: April 6, 2020Publication date: July 7, 2022Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Taiji SAKAMOTO, Kazuhide NAKAJIMA, Masaki WADA, Shinichi AOZASA, Takashi YAMAMOTO
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Patent number: 11237322Abstract: An optical fiber manufacturing method includes setting a first holding member and a rod inside a glass pipe, the first holding member made of glass and having plural holes formed, so that the rod is supported by the first holding member; filling glass particles between the rod and a glass pipe inner wall; holding the rod such that the rod and the filled glass particles are enclosed by the glass pipe inner wall and the first and second holding members, and sealing one end of the glass pipe and manufacturing an intermediate; and manufacturing an optical fiber from the intermediate, wherein a bulk density of the first and second holding members is set with reference to a bulk density of a filling portion made from the glass particles, and the predetermined range is determined according to a core diameter permissible variation range in its longitudinal direction.Type: GrantFiled: September 16, 2019Date of Patent: February 1, 2022Assignees: FURUKAWA ELECTRIC CO., LTD., NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi Arai, Harumi Inaba, Shigeto Matsumoto, Takeshi Yagi, Shinichi Aozasa, Kyozo Tsujikawa, Kazuhide Nakajima
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Patent number: 11196227Abstract: An optical amplifier of the present disclosure includes an optical resonator that includes an amplification fiber capable of amplifying signal light having one or more propagation modes and resonates at least one propagation mode of the signal light amplified by the amplification fiber; an excitation light source that outputs excitation light for exciting the amplification fiber; and a multiplexer that multiplexes the signal light and the excitation light, in which the optical resonator includes a gain clamp setting unit which sets gain clamp for at least one propagation mode out of a plurality of propagation modes resonating in the optical resonator.Type: GrantFiled: October 25, 2017Date of Patent: December 7, 2021Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Masaki Wada, Shinichi Aozasa, Taiji Sakamoto, Takashi Yamamoto, Kazuhide Nakajima, Takayoshi Mori
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Publication number: 20210041622Abstract: Provided are a multi-core fiber that enables complete automation of alignment in fusion splicing of multi-core fibers and an apparatus for manufacturing the multi-core fiber. A glass cladding of the multi-core fiber has a coating. A coating marker is drawn on the coating at a position that is determined by a predetermined rule that prescribes a positional relation with the core, for example, the coating marker is drawn on the coating near a specific core number. During fusion splicing of the multi-core fibers, two multi-core fibers are installed such that positions of the coating markers are substantially aligned. After the installation of the multi-core fibers, the coating markers of the two multi-core fibers are subjected to automatic rotational alignment by a fusion splicer to achieve a predetermined positional relation, and thus rotational positions between the two multi-core fibers are aligned.Type: ApplicationFiled: February 8, 2019Publication date: February 11, 2021Inventors: Hirotaka Ono, Shinichi Aozasa
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Patent number: 10782478Abstract: A differential mode attenuation compensator includes a first multi-mode optical fiber and a third multi-mode optical fiber in which a plurality of propagation modes propagate in a wavelength of a propagating optical signal; and a second multi-mode optical fiber including a core and a clad and arranged with a central axis aligned between the first multi-mode optical fiber and the third multi-mode optical fiber, in which each loss in the plurality of propagation modes is different in the first multi-mode optical fiber and the third multi-mode optical fiber.Type: GrantFiled: August 1, 2017Date of Patent: September 22, 2020Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Masaki Wada, Taiji Sakamoto, Takayoshi Mori, Shinichi Aozasa, Takashi Yamamoto, Kazuhide Nakajima
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Publication number: 20200012042Abstract: An optical fiber manufacturing method includes setting a first holding member and a rod inside a glass pipe, the first holding member made of glass and having plural holes formed, so that the rod is supported by the first holding member; filling glass particles between the rod and a glass pipe inner wall; holding the rod such that the rod and the filled glass particles are enclosed by the glass pipe inner wall and the first and second holding members, and sealing one end of the glass pipe and manufacturing an intermediate; and manufacturing an optical fiber from the intermediate, wherein a bulk density of the first and second holding members is set with reference to a bulk density of a filling portion made from the glass particles, and the predetermined range is determined according to a core diameter permissible variation range in its longitudinal direction.Type: ApplicationFiled: September 16, 2019Publication date: January 9, 2020Applicants: FURUKAWA ELECTRIC CO., LTD., NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Shinichi ARAI, Harumi Inaba, Shigeto Matsumoto, Takeshi Yagi, Shinichi Aozasa, Kyozo Tsujikawa, Kazuhide Nakajima
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Publication number: 20190245317Abstract: An optical amplifier of the present disclosure includes an optical resonator that includes an amplification fiber capable of amplifying signal light having one or more propagation modes and resonates at least one propagation mode of the signal light amplified by the amplification fiber; an excitation light source that outputs excitation light for exciting the amplification fiber; and a multiplexer that multiplexes the signal light and the excitation light, in which the optical resonator includes a gain clamp setting unit which sets gain clamp for at least one propagation mode out of a plurality of propagation modes resonating in the optical resonator.Type: ApplicationFiled: October 25, 2017Publication date: August 8, 2019Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Masaki WADA, Shinichi AOZASA, Taiji SAKAMOTO, Takashi YAMAMOTO, Kazuhide NAKAJIMA, Takayoshi MORI
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Publication number: 20190196106Abstract: A differential mode attenuation compensator includes a first multi-mode optical fiber and a third multi-mode optical fiber in which a plurality of propagation modes propagate in a wavelength of a propagating optical signal; and a second multi-mode optical fiber including a core and a clad and arranged with a central axis aligned between the first multi-mode optical fiber and the third multi-mode optical fiber, in which each loss in the plurality of propagation modes is different in the first multi-mode optical fiber and the third multi-mode optical fiber.Type: ApplicationFiled: August 1, 2017Publication date: June 27, 2019Applicant: NIPPON TELEGRAPH AND TELEPHONE CORPORATIONInventors: Masaki WADA, Taiji SAKAMOTO, Takayoshi MORI, Shinichi AOZASA, Takashi YAMAMOTO, Kazuhide NAKAJIMA