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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 21 - 40 of 50 [Previous]  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
EST 2020-01-31
13:50
Oita Beppu International Convention Center Comparative Study of THz sensors with InSb elements
Jun Nakano, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2019-97
We investigate and compare terahertz (THz) sensors with indium antimonide (InSb) elements. THz sensors with cross-dipole... [more] EST2019-97
pp.91-96
EST 2020-01-31
14:15
Oita Beppu International Convention Center Analysis of a TE-pass/TM-stop waveguide polarizer in the THz region
Sumire Takahashi, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2019-98
We propose a TE-pass/TM-stop waveguide polarizer with a semiconductor layer in the terahertz region. First, we investiga... [more] EST2019-98
pp.97-102
EST 2020-01-31
15:45
Oita Beppu International Convention Center Analysis of the radiation characteristics of a photoconductive antenna using the FDTD method with the subgrid technique
Yu Nakano, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2019-101
A photoconductive antenna has been investigated as a way to emit terahertz waves.Using the finite- difference time-domai... [more] EST2019-101
pp.115-118
EST 2020-01-31
16:10
Oita Beppu International Convention Center FDTD analysis of mode converters using an insulator-metal-insulator waveguide
Takahiro Suzuki, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2019-102
We evaluate mode conversion characteristics of surface plasmon polaritons propagating along insulator-metal-insulator (I... [more] EST2019-102
pp.119-123
MW, EST, OPE, MWP, EMT, IEE-EMT, THz [detail] 2019-07-18
11:15
Hokkaido Hakodate City Central Library Kretschmann- and Otto-type surface plasmon resonance waveguide sensors in the terahertz region
Kota Mitsutake, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EMT2019-23 MW2019-36 OPE2019-27 EST2019-25 MWP2019-23
We propose surface plasmon resonance(SPR) waveguide sensors based on the Kretschmann and Otto configurations in the THz ... [more] EMT2019-23 MW2019-36 OPE2019-27 EST2019-25 MWP2019-23
pp.101-106
EST 2018-09-06
15:15
Okinawa Kumejima-machi, Okinawa Evaluation of the characteristics of a terahertz SPR waveguide sensor with an analyte container
Kei Yoshihara, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2018-49
Frequency responses of a terahertz surface plasmon resonance (SPR) waveguide sensor with an analyte container are quanti... [more] EST2018-49
pp.35-39
EST 2018-09-07
09:30
Okinawa Kumejima-machi, Okinawa Design of a metal disc-type surface wave splitter using the cylindrical semi-implicit FDTD method and its fabrication
Tatsuyuki Hara, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2018-52
A metal disc-type surface wave splitter utilizing the propagation characteristics of spoof surface plasmon polaritons (S... [more] EST2018-52
pp.53-57
PEM
(2nd)
2018-05-24
13:00
Tokyo   [Invited Talk] FDTD analysis of terahertz devices using surface plasmon polariton propagation properties
Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.)
 [more]
EMT, EST, LQE, MWP, OPE, PEM, PN, IEE-EMT [detail] 2018-01-25
10:45
Hyogo   Development of a semi-implicit FDTD method in cylindrical coordinates and its extension to a frequency-dependent version
Masato Ito, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) PN2017-55 EMT2017-92 OPE2017-133 LQE2017-115 EST2017-91 MWP2017-68
 [more] PN2017-55 EMT2017-92 OPE2017-133 LQE2017-115 EST2017-91 MWP2017-68
pp.93-97
EMT, EST, LQE, MWP, OPE, PEM, PN, IEE-EMT [detail] 2018-01-25
11:10
Hyogo   Analysis of a plasmoic-waveguide-based wavelength splitter with stubs using the FDTD method with a GPU
Hiroki Kawai, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) PN2017-56 EMT2017-93 OPE2017-134 LQE2017-116 EST2017-92 MWP2017-69
 [more] PN2017-56 EMT2017-93 OPE2017-134 LQE2017-116 EST2017-92 MWP2017-69
pp.99-103
MWP, OPE, EMT, MW, EST, IEE-EMT [detail] 2017-07-20
13:55
Hokkaido Obihiro Chamber of Commerce and Industry EMT2017-16 MW2017-41 OPE2017-21 EST2017-18 MWP2017-18 Since the finite-difference time-domain (FDTD) method is an explicit scheme, a time step size ($Delta{t}$) is restricted... [more] EMT2017-16 MW2017-41 OPE2017-21 EST2017-18 MWP2017-18
pp.55-60
OPE, EST, LQE, EMT, PN, MWP, IEE-EMT [detail] 2017-01-18
15:30
Mie Iseshi Kanko Bunka Kaikan Improvement of the characteristics of a terahertz SPR waveguide sensor with an analyte container
Keisuke Shimizu, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) PN2016-50 EMT2016-79 OPE2016-125 LQE2016-114 EST2016-89 MWP2016-63
Frequency responses of a terahertz surface plasmon resonance waveguide sensor with an analyte container are improved wit... [more] PN2016-50 EMT2016-79 OPE2016-125 LQE2016-114 EST2016-89 MWP2016-63
pp.51-56
OPE, EST, LQE, EMT, PN, MWP, IEE-EMT [detail] 2017-01-19
13:45
Mie Iseshi Kanko Bunka Kaikan FDTD analysis of a wavelength splitter using three-dimensional plasmoic waveguides
Jun Shibayama, Hiroki Kawai, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) PN2016-78 EMT2016-107 OPE2016-153 LQE2016-142 EST2016-117 MWP2016-91
A wavelength splitter is proposed on the basis of slit-type band-pass filters consisting of three-dimensional (3D) plasm... [more] PN2016-78 EMT2016-107 OPE2016-153 LQE2016-142 EST2016-117 MWP2016-91
pp.247-252
EST 2016-09-09
10:51
Okinawa Ishigakishi-Shoko-Kaikan Application of a Fundamental Scheme to Simplifying Implicit FDTD Methods and Beam-Propagation Methods
Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2016-51
(To be available after the conference date) [more] EST2016-51
pp.241-245
LQE, EST, OPE, EMT, PN, MWP, IEE-EMT, PEM [detail] 2016-01-28
09:55
Hyogo   FDTD analysis of terahertz filters with InSb gratings
Jun Shibayama, Ryo Umezawa, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) PN2015-61 EMT2015-112 OPE2015-174 LQE2015-161 EST2015-118 MWP2015-87
We investigate the transmission characteristics of THz filters with the localized surface plasmon resonance excited arou... [more] PN2015-61 EMT2015-112 OPE2015-174 LQE2015-161 EST2015-118 MWP2015-87
pp.169-174
EST 2015-09-03
13:00
Okinawa Oohama-Nobumoto-Kinenkan, Ishigaki Island, Okinawa, Japan Three-Dimensional FDTD Analysis of Band-Pass Filters
Yusuke Wada, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2015-57
 [more] EST2015-57
pp.23-28
EST 2015-05-15
09:30
Tokyo Hosei Univ. (Koganei Campus) Numerical analysis of a surface plasmon resonance waveguide sensor in the THz region
Jun Shibayama, Keisuke Shimizu, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2015-1
A surface plasmon resonance (SPR) waveguide sensor with indium antimonide (InSb) adopted for the sensing section is prop... [more] EST2015-1
pp.1-6
MW, OPE, EMT, MWP, EST, IEE-EMT [detail] 2014-07-17
15:20
Hokkaido Muroran Inst. of Tech. Transmission characteristics of multi-layer terahertz frequency selective surfaces composed of a square patch and a cross dipole
Shingo Ozaki, Jun Shibayama, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) MW2014-70 OPE2014-39 EST2014-31 MWP2014-28
Multi-layer terahertz frequency selective surfaces (FSSs) composed of a square patch and a cross dipole are analyzed usi... [more] MW2014-70 OPE2014-39 EST2014-31 MWP2014-28
pp.121-126
EST 2014-05-30
10:20
Tokyo   Comparison of the Numerical Results of the Two- and Three-Dimensional Plasmonic Devices
Jun Shibayama, Yusuke Wada, Tomoyuki Hirano, Junji Yamauchi, Hisamatsu Nakano (Hosei Univ.) EST2014-3
A comparison is given to the numerical results of two-dimensional (2-D) and three-dimensional (3-D) plasmonic devices. F... [more] EST2014-3
pp.11-16
EMCJ, IEE-EMC, MW, EST [detail] 2013-10-24
16:35
Miyagi Tohoku Univ. An investigation on the hardware acceleration of LOD-FDTD method with GPGPU and its application to the bioelectromagnetic analysis
Hiroki Ogata (Tokyo Metropolitan Univ.), Kensuke Sasaki, Jerdvisanop Chakarothai (NICT), Yukihisa Suzuki (Tokyo Metropolitan Univ.), Jun Shibayama (Hosei Univ.) EMCJ2013-75 MW2013-115 EST2013-67
 [more] EMCJ2013-75 MW2013-115 EST2013-67
pp.83-86
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