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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 22  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
OFT 2024-05-09
13:05
Nagasaki
(Primary: On-site, Secondary: Online)
[Invited Talk] Research and Pratical Trends in Hollow-core Fiber
Takeshi Takagi, Kazunori Mukasa (Furukawa Electric) OFT2024-1
(To be available after the conference date) [more] OFT2024-1
pp.1-4
OCS, OFT, IEE-CMN, ITE-BCT
(Joint) [detail]
2023-11-10
11:25
Kyoto
(Primary: On-site, Secondary: Online)
Group Delay Characteristics of Hollow Core Photonic Bandgap Fiber
Keishiro Iseri, Haruya Inamitsu, Toshio Watanabe, Tsutomu Nagayama, Seiji Fukushima (Kagoshima Univ.) OFT2023-54
In an application where low-latency communication is crucial, a hollow core photonic bandgap optical fiber (HC-PBGF) is ... [more] OFT2023-54
pp.36-39
PN 2023-04-28
14:35
Kanagawa
(Primary: On-site, Secondary: Online)
[Invited Talk] High power optical transmission system using a hollow core optical fiber -- Application to high split ratio passive optical network and optically powered radio-over-fiber system --
Hiroyuki Tsuda (Keio Univ.) PN2023-3
A hollow core fiber has very low optical nonlinearity and high damage threshold power, allowing it to transmit high powe... [more] PN2023-3
pp.12-16
OFT, OCS, IEE-CMN, ITE-BCT [detail] 2017-11-24
14:50
Osaka Kansa-Univ. Umeda Campus Effect of Surface Modes on Core Modes in Hollow-Core Photonic Bandgap Fibers
Nobuaki Kosake, Hirokazu Kubota, Yuji Miyoshi, Masaharu Ohashi (Osaka Pref. Univ.) OFT2017-55
Hollow-core photonic bandgap fibers (PBGFs) with low attenuation and dispersion are expected because they use a micro st... [more] OFT2017-55
pp.71-74
OCS, OFT, OPE
(Joint) [detail]
2017-02-17
09:55
Osaka Osaka Prefecture University(I-site Nanba) Effect of surface modes on dispersion in hollow-core photonic bandgap fibers
Nobuaki Kosake, Hirokazu Kubota, Yuji Miyoshi, Masaharu Ohashi (Osaka Pref. Univ.) OFT2016-50 OPE2016-167
Realization of hollow-core photonic bandgap fibers (PBGFs) with low attenuation and dispersion are expected because they... [more] OFT2016-50 OPE2016-167
pp.29-32(OFT), pp.39-42(OPE)
OFT 2013-05-24
09:55
Okinawa   Design of Broadband Hollow Core Photonic Bandgap Fibers
Kazuki Matsubara, Kunimasa Saitoh (Hokkaido Univ.), Shoichiro Matsuo (Fujikura) OFT2013-10
Hollow core photonic bandgap fibers (PBGF) have gathered much attention in recent years because of their intriguing prop... [more] OFT2013-10
pp.41-44
OFT 2011-05-26
13:00
Kagoshima   Optical Coupler Using Photonic Bandgap Fiber
Masashi Kikuchi (Univ. of Tokyo), Hirokazu Kubota (NTT), Zuyuan He, Kazuo Hotate (Univ. of Tokyo) OFT2011-1
Photonic bandgap fibers (PBFs) possess low nonlinearity and stability to temperature due to a hollow-core. These charact... [more] OFT2011-1
pp.1-4
OPE, EMT, LQE, PN, IEE-EMT [detail] 2011-01-27
14:05
Osaka Osaka Univ. [Invited Talk] Recent Progress in Photonic Crystals
Susumu Noda (Kyoto Univ.) PN2010-34 OPE2010-147 LQE2010-132
Photonic crystals, in which the refractive index changes periodically, provide an exciting tool for the manipulation of ... [more] PN2010-34 OPE2010-147 LQE2010-132
pp.47-48
ITE-BCT, OCS, OFT, IEE-CMN
(Joint) [detail]
2010-11-18
14:15
Osaka SEI Ikoma Seminar House Multiple resonant coupling mechanism for higher-order-modes' suppression in all-solid photonic bandgap fibers with heterostructured cladding
Tadashi Murao, Kunimasa Saitoh, Masanori Koshiba (Hokkaido Univ.) OFT2010-41
In this work, we propose a novel mechanism for suppression of higher-order modes (HOMs), namely multiple resonant coupli... [more] OFT2010-41
pp.15-19
ITE-BCT, OCS, OFT, IEE-CMN
(Joint) [detail]
2010-11-19
14:00
Osaka SEI Ikoma Seminar House Confined Modes of Large Core Photonic Bandgap Fiber
Hirokazu Kubota (NTT), Masashi Kikuchi, Zuyuan He, Kazuo Hotate (Tokyo Univ.) OCS2010-98
Confined modes of photonic bandgap fiber with core area compatible to standard single mode fiber is investigated. Caref... [more] OCS2010-98
pp.63-66
OFT 2009-05-28
15:45
Shizuoka   Bend-Insensitive and Single-Mode Hetero-Cladding Structured Solid-Core Photonic Bandgap Fibers
Tadashi Murao, Kunimasa Saitoh (Hokkaido Univ.), Toshiki Taru, Takuji Nagashima (Sumitomo Electric), Kuniaki Maeda (Hokkaido Univ.), Takashi Sasaki (Sumitomo Electric), Masanori Koshiba (Hokkaido Univ.) OFT2009-7
Solid-core photonic bandgap fibers (SC-PBGFs) guide light along the fiber length in the low-index defected core region b... [more] OFT2009-7
pp.31-34
OFT, OCS, ITE-BCT, IEE-CMN
(Joint) [detail]
2008-11-21
08:45
Oita   Analysis of bending loss in solid-core photonic bandgap fibers
Tadashi Murao, Kunimasa Saitoh, Masanori Koshiba (Hokkaido Univ.) OFT2008-59
Solid-core photonic bandgap fibers (SC-PBGFs) have gathered much attention because of its intriguing transmission band p... [more] OFT2008-59
pp.65-70
OFT, OCS, ITE-BCT, IEE-CMN
(Joint) [detail]
2008-11-21
09:10
Oita   Design of thermo-tunable couplers based on solid core photonic band-gap fibers
Ryuichi Yoshida, Yukihiro Tsuchida, Tadashi Murao, Kunimasa Saitoh, Masanori Koshiba (Hokkaido Univ.) OFT2008-60
In this work, we propose low polarization-dependent thermo-tunable couplers based on solid-core photonic band-gap fibers... [more] OFT2008-60
pp.71-76
OCS, OFT
(Joint)
2008-08-28
10:50
Hokkaido   Ytterbium-doped Solid Photonic BandGap Fiber
Katsuhiro Takenaga, Ryuichiro Goto, Kenji Okada, Masahiro Kashiwagi, Shoji Tanigawa, Shoichiro Matsuo, Munehisa Fujimaki (Fujikura) OCS2008-34
Watts-class high-power lasers lasing at 1160-1180 nm have been of great interest to realize high-power yellow-orange las... [more] OCS2008-34
pp.7-12
OPE, OFT 2008-03-07
13:00
Tokyo Kikai-Shinko-Kaikan Bldg. Structural optimization of air-guiding photonic bandgap fibers for realizing ultimate low-loss waveguides
Tadashi Murao, Kunimasa Saitoh, Masanori Koshiba (Hokkaido Univ.) OFT2007-66 OPE2007-185
The existence of surface modes is the main drawback and the reduction of the fiber losses is not sufficient in 6-fold sy... [more] OFT2007-66 OPE2007-185
pp.21-26
OFT 2007-10-19
11:40
Toyama   Raman Gain Suppression in All-solid Photonic Bandgap Fiber
Toshiki Taru (SEI), Jing Hou, Jonathan C. Knight (Univ. Bath) OFT2007-37
We propose Raman gain suppression using all-solid (solid-core) photonic bandgap fiber. We have demonstrated to suppress ... [more] OFT2007-37
pp.29-32
LQE, PN, OPE, OFT, EMT 2006-02-01
11:05
Hyogo Kobe Univ. Wide-Band Single-Mode Photonic Band-Gap Fiber with Extended Triangular Lattice and Capillary Core
Ryuichiro Goto, Ning Guan, Katsuhiro Takenaga, Shoichiro Matsuo, Kuniharu Himeno, Keiji Ohashi (Fujikura)
We propose a single-mode photonic band-gap fibre with an extended triangular lattice cladding and a capillary core. We ... [more] PN2005-75 OFT2005-62 OPE2005-123 LQE2005-138
pp.29-32
OCS, OPE, LQE 2005-11-03
15:10
Fukuoka   [Invited Talk] ECOC2005 Report -- Optical Fibers --
Kuniharu Himeno (Fujikura)
Topics on optical fibers, which were presented in ECOC2005, are introduced and reviewed [more] OCS2005-51 OPE2005-81 LQE2005-89
pp.23-26
OFT, OCS
(Joint)
2005-08-26
09:50
Akita Akita Univ. Photonic Bandgap fibre with Extended Triangular Lattice and Capillary Core
Katsuhiro Takenaga, Ning Guan, Ryuichiro Goto, Shoichiro Matsuo, Kuniharu Himeno (Fujikura)
We present a photonic bandgap fibre(PBGF) composed of an extended triangular lattice cladding and a capillary core, whic... [more] OCS2005-37
pp.13-16
PN, OPE, OFT, LQE 2005-01-27
15:10
Osaka Osaka University Design and Fabrication of High-Q High-transmittance Resonant Tunneling Device in 2D Photonic Crystal Slab and its Application
Satoshi Mitsugi, Akihiko Shinya (NTT-BRL), Gou Kira (Tokyo Tech.), Shingo Kondo (Tokai Univ.), Eiichi Kuramochi, Masaya Notomi, Tai Tsuchizawa, Toshifumi Watanabe (NTT-BRL)
In photonic crystals (PhCs), large improvement in Q value of point defect ultra-small cavities is going to be achieved. ... [more] PN2004-94 OFT2004-100 OPE2004-201 LQE2004-148
pp.45-49
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