The search functionality is under construction.

Author Search Result

[Author] Tadao NAGATSUMA(28hit)

1-20hit(28hit)

  • Photonics for Millimeter-Wave and Terahertz Sensing and Measurement Open Access

    Tadao NAGATSUMA  Shintaro HISATAKE  Hai Huy NGUYEN PHAM  

     
    INVITED PAPER

      Vol:
    E99-C No:2
      Page(s):
    173-180

    This paper describes recent progress of photonically-enabled systems for millimeter-wave and terahertz measurement applications. After briefly explaining signal generation schemes as a foundation of photonics-based approach, system configurations for specific applications are discussed. Then, practical demonstrations are presented, which include frequency-domain spectroscopy, phase-sensitive measurement, electric-field measurement, and 2D/3D imaging.

  • Near-Field Mapping System Using Fiber-Based Electro-Optic Probe for Specific Absorption Rate Measurement

    Hiroyoshi TOGO  Naofumi SHIMIZU  Tadao NAGATSUMA  

     
    INVITED PAPER

      Vol:
    E90-C No:2
      Page(s):
    436-442

    We have developed a near-field mapping system with a fiber-based electro-optic (EO) probe for microwave antenna characterization. In this probe, an EO crystal is mounted on the tip of an optical fiber through a collimating lens. Since the lens allows the crystal thickness to be lengthened by reducing the loss of an optical beam coupling back to the optical fiber, sensitivity is improved. Because the tip of the EO probe consists of a 1-mm-cubic EO crystal and contains no metallic components, there is very little disturbance of the mapped electric field. Fixing the optical fiber in a thin glass tube provides stable sensitivity during long-term mapping over a large area. The fabricated EO probe has a dynamic range larger than 45 dB, flat sensitivity from 1.95 to 20 GHz, and directivity with cross-axis sensitivity isolation greater than 30 dB. A comparison of the measured and calculated near fields of a dipole antenna showed negligible static or inductive coupling between the EO probe and the dipole antenna. Using a tissue-equivalent phantom to assess the specific absorption rate (SAR), we demonstrated the potential of the EO probe for mapping the electric field with information of amplitude and phase. The EO probe can detect an electric field of less than 0.6 V/m, which corresponds to a SAR of 0.5 mW/kg. This value satisfies the minimum detection limit defined in the regulations for determining SAR. This result shows the potential of the near-field mapping system with the fiber-based EO probe in practical applications.

  • Three Dimensional Millimeter- and Terahertz-Wave Imaging Based on Optical Coherence Tomography Open Access

    Toshiyuki IKEO  Takayuki ISOGAWA  Tadao NAGATSUMA  

     
    INVITED PAPER

      Vol:
    E96-C No:10
      Page(s):
    1210-1217

    Three dimensional (3D) terahertz (THz) imaging or THz tomography has recently proven to be useful for non-destructive testing of industrial materials and structures. In place of previous imaging techniques such as THz pulse or continuous wave (CW) radar, we propose a THz optical coherence tomography (OCT) using frequency-swept THz sources, and demonstrate 3D imaging. In addition, we further apply this technique to the millimeter-wave region in order to extend applicable targets.

  • Low-Phase Noise Photonic Millimeter-Wave Generator Using an AWG Integrated with a 3-dB Combiner

    Akihiko HIRATA  Hiroyoshi TOGO  Naofumi SHIMIZU  Hiroshi TAKAHASHI  Katsunari OKAMOTO  Tadao NAGATSUMA  

     
    PAPER-Millimeter-Wave Technologies

      Vol:
    E88-C No:7
      Page(s):
    1458-1464

    We present a low-phase-noise and frequency-tunable photonic millimeter-wave (MMW) generator based on two-mode beating. The generator consists of a single-mode laser, an external optical intensity modulator, and a planar lightwave circuit (PLC) on which an arrayed-waveguide grating (AWG) and 3-dB optical combiners are integrated. Because the AWG and the optical combiners are connected with optical waveguides and the optical path length difference between the two modes filtered by the AWG is kept constant, the phase fluctuation of the generated MMW signal is suppressed. The generator can generate MMWs with a phase noise of less than -75 dBc/Hz at 100 Hz and has a frequency tunability in a range of 90 to 125 GHz. The generator can be applied for the local oscillator (LO) in 10-Gbit/s wireless links that use heterodyne detection.

  • 3.0 Gbit/s Wireless Links Using 120-GHz Millimeter-Wave Photonic Techniques

    Akihiko HIRATA  Mitsuru HARADA  Tadao NAGATSUMA  

     
    LETTER-Optoelectronics

      Vol:
    E85-C No:7
      Page(s):
    1516-1518

    Wireless data transmission at 3.0 Gbit/s was achieved by using millimeter-wave photonic techniques, such as optical 120-GHz subcarrier generation, optical modulation, and high-power photonic millimeter-wave emission. We have successfully demonstrated the transmission of optical Gigabit Ethernet signals over this link.

  • Water Content Estimation in Thermal Insulation Layer Using Millimeter-Wave Optical Coherence Tomography

    Yushi TAMENORI  Haruka TOKUNAGA  Li YI  Tadao NAGATSUMA  

     
    PAPER-Microwaves, Millimeter-Waves

      Pubricized:
    2021/08/05
      Vol:
    E105-C No:1
      Page(s):
    1-8

    The demand for non-destructive inspection of the thermal insulation layer of Japanese houses has been increasing. Surface temperature measurement is commonly used for estimating the condition of the thermal insulation layer that is located inside the walls. However, the accuracy needs to be improved because this approach only considers the surface information. To evaluate the thermal insulation layer inside the walls, a millimeter-wave tomography system is proposed for measuring the water content. The system can provide ∼10 mm range resolution to differentiate the reflections from the thermal insulation layer behind the external wall. The Lichtenecker-Rother model is applied for the quantitative evaluation of the water content using the reflected signal. The proposed model is consistent with the experimental data, confirming that a maximum error of 16.0% is obtained. It is also demonstrated that the water content distribution can be visualized with a range resolution of 10.6 mm.

  • Electro-Optic Testing Technology for High-Speed LSIs

    Tadao NAGATSUMA  

     
    INVITED PAPER

      Vol:
    E79-C No:4
      Page(s):
    482-488

    With increases in the speed of semiconductor devices and integrated circuits, the importance of internal testing with sufficient temporal resolution has been growing. This paper describes recently established electro-optic testing technologies based on pulse lasers and electro-optic crystal probes. Practicability, limitation and future issues are discussed.

  • InP/InGaAs Uni-Traveling-Carrier Photodiodes

    Tadao ISHIBASHI  Tomofumi FURUTA  Hiroshi FUSHIMI  Satoshi KODAMA  Hiroshi ITO  Tadao NAGATSUMA  Naofumi SHIMIZU  Yutaka MIYAMOTO  

     
    INVITED PAPER-High-Speed Optical Devices

      Vol:
    E83-C No:6
      Page(s):
    938-949

    This paper reviews the operation, design, and performance of the uni-traveling-carrier-photodiode (UTC-PD). The UTC-PD is a new type of photodiode that uses only electrons as its active carriers and its prime feature is high current operation. A small signal analysis predicts that a UTC-PD can respond to an optical signal as fast as or faster than a pin-PD. A comparison of measured pulse photoresponse data reveals how the saturation mechanisms of the UTC-PD and pin-PD differ. Applications of InP/InGaAs UTC-PDs as optoelectronic drivers are also presented.

  • Electric-Field Scanning System Using Electro-Optic Sensor

    Ai-ichiro SASAKI  Tadao NAGATSUMA  

     
    INVITED PAPER-Measurements Techniques

      Vol:
    E86-C No:7
      Page(s):
    1345-1351

    To perform a high-speed measurement of a two-dimensional electric-field distribution, we developed an electric-field scanning system using a large-aperture electro-optic crystal and a laser-beam scanner. In the system, a two-dimensional electric-field image projected onto the crystal is read off using beam scanning through an electro-optic effect. With the imaging system, only 20 to 40 seconds are needed to obtain both millimeter-wave amplitude and phase images of a 20 30 mm area with a pixel spacing of 0.5 mm. We measured radiation patterns of a 10-GHz dipole antenna and compared them with simulation results to investigate a disturbance of the patterns inside the crystal. Profiles of a 120-GHz millimeter-wave beam were also measured to determine the effects of a dielectric lens used to focus the beam. Furthermore, we applied the system to imaging several objects with 180-GHz millimeter waves and experimentally showed that it is a valid means for a non-destructive inspection of hidden objects.

  • Photonic Millimeter Wave Transmitter for a Real-Time Coherent Wireless Link Based on Injection Locking of Integrated Laser Diodes

    Shintaro HISATAKE  Guillermo CARPINTERO  Yasuyuki YOSHIMIZU  Yusuke MINAMIKATA  Kazuki OOGIMOTO  Yu YASUDA  Frédéric van DIJK  Tolga TEKIN  Tadao NAGATSUMA  

     
    PAPER

      Vol:
    E98-C No:12
      Page(s):
    1105-1111

    We propose the concept of an integrated coherent photonic wireless transmitter based on the simultaneous injection locking of two monolithically integrated distributed feedback (DFB) laser diodes (LDs) using an optical frequency comb (OFC). We characterize the basic operation of the transmitter and demonstrate that two injection-locked integrated DFB LDs are sufficiently stable to generate the carrier signal using a uni-traveling-carrier photodiode (UTC-PD) for a real-time error-free (bit error rate: BER < 10-11) coherent transmission with a data rate of 10 Gbit/s at a carrier frequency of 97 GHz. In the coherent wireless transmission, we compare the BER characteristics of the injection-locked transmitter with that of an actively phase-stabilized transmitter and show that the power penalty of 8-dB for the injection-locked transmitter is due to the RF spurious components, which can be reduced by integrating the OFC generator (OFCG) and LDs on the same chip. Our results suggest that the integration of the OFCG, DFB LDs, modulators, semiconductor optical amplifiers, and UTC-PD on the same chip is a promising strategy to develop a practical real-time ultrafast coherent millimeter/terahertz wave wireless transmitter.

  • Evaluation of Transmission Characteristics of 120-GHz-Band Close-Proximity Wireless Links Using Split-Ring-Resonator Absorber Integrated Planar Slot Antenna

    Akihiko HIRATA  Tubasa SAIJO  Yuma KAWAMOTO  Tadao NAGATSUMA  Issei WATANABE  Norihiko SEKINE  Akifumi KASAMATSU  

     
    PAPER-Microwaves, Millimeter-Waves

      Pubricized:
    2023/03/09
      Vol:
    E106-C No:9
      Page(s):
    458-465

    We experimentally evaluated transmission characteristics of 120-GHz-band close-proximity wireless link that employs a split-ring resonator (SRR) millimeter-wave (MMW) absorber integrated on planar slot antennas in 120-GHz-band close-proximity wireless links. We fabricated the SRR MMW absorber made of a 0.28-μm-thick TaN film on a quartz substrate, and integrated it on planar single slot antennas. When the TaN SRRs are not integrated on the planar slot antennas, multiple reflections between the two antennas occur, and a >10-dB fluctuation of S21 at 100-140GHz is observed. When the TaN SRRs are integrated on the planar antennas, the fluctuation of S21 is suppressed to be 3.5dB at 100-140GHz. However, the transmittance of the close-proximity wireless link decreases by integrating TaN SRRs on the planar slot antenna because of reflection at the quartz substrate surface. The integration of the radiator that is composed of single SRR with two capacitors just above the slot antenna increased S21 by 3.5dB at 125GHz. We conducted a data transmission experiment over a close-proximity wireless link that employs radiator-and-TaN-SRR-integrated slot antennas for Tx and Rx, and succeeded to transmit 10-Gbit/s data over the close-proximity wireless link for the first time.

  • 300-GHz-Band Diplexer for Frequency-Division Multiplexed Wireless Communication

    Yuma KAWAMOTO  Toki YOSHIOKA  Norihiko SHIBATA  Daniel HEADLAND  Masayuki FUJITA  Ryo KOMA  Ryo IGARASHI  Kazutaka HARA  Jun-ichi KANI  Tadao NAGATSUMA  

     
    BRIEF PAPER

      Pubricized:
    2023/04/19
      Vol:
    E106-C No:11
      Page(s):
    722-726

    We propose a novel silicon diplexer integrated with filters for frequency-division multiplexing in the 300-GHz band. The diplexer consists of a directional coupler formed of unclad silicon wires, a photonic bandgap-based low-pass filter, and a high-pass filter based on frequency-dependent bending loss. These integrated filters are capable of suppressing crosstalk and providing >15dB isolation over 40GHz, which is highly beneficial for terahertz-range wireless communications applications. We have used this diplexer in a simultaneous error-free wireless transmission of 300-GHz and 335-GHz channels at the aggregate data rate of 36Gbit/s.

  • Low-Cost Millimeter-Wave Photonic Techniques for Gigabit/s Wireless Link

    Akihiko HIRATA  Mitsuru HARADA  Kenji SATO  Tadao NAGATSUMA  

     
    INVITED PAPER-Photonic Links for Wireless Communications

      Vol:
    E86-C No:7
      Page(s):
    1123-1128

    We present low-cost millimeter-wave (MMW) photonic techniques for implementing gigabit/s wireless links. A passive mode-locked laser consisting of a Fabry-Perot laser and a single-mode fiber is used to generate 120-GHz optical MMW signals. We modulated these MMW signals by controlling the bias voltage of the photodiode. The MMW generation and modulation methods do not need expensive photonic components or high-power drivers. A link employing these low-cost photonic techniques achieved 1.25-Gbit/s wireless data transmission.

  • Recent Progress and Future Prospect of Photonics-Enabled Terahertz Communications Research Open Access

    Tadao NAGATSUMA  Guillermo CARPINTERO  

     
    INVITED PAPER

      Vol:
    E98-C No:12
      Page(s):
    1060-1070

    This paper reviews a recent progress in terahertz wireless communications enabled by photonics technologies. After briefly summarizing transceiver configurations with electronics and photonics technologies, photonics-based approaches to achieving over 100-Gbit/s data rates are discussed. Then, some of our updated results on real-time wireless transmission experiments using discrete components are shown at data rates up to 50 Gbit/s. Finally, integration technologies are described by demonstrating latest advances in integrated optical sources and transmitters.

  • Design and Measurement of the Plate Laminated Waveguide Slot Array Antenna and Its Feasibility for Wireless Link System in the 120 GHz Band

    Dongjin KIM  Jiro HIROKAWA  Kimio SAKURAI  Makoto ANDO  Takuma TAKADA  Tadao NAGATSUMA  Jun TAKEUCHI  Akihiko HIRATA  

     
    PAPER-Antennas and Propagation

      Vol:
    E96-B No:8
      Page(s):
    2102-2111

    We design and fabricate a double-layer hollow-waveguide slot array antenna with wide bandwidth and high antenna efficiency for the 120 GHz band. The antenna is fabricated by diffusion bonding of laminated thin metal plates for high precision and perfect electrical contact. The 1616-element antenna shows more than 70% antenna efficiency over a 13 GHz bandwidth. Furthermore, it realizes error-free data transmission in 2.5 m distance at up to 10 Gbit/s. To our knowledge, this is the first report of the design and fabrication of a high-efficiency wideband planar antenna for the 120 GHz band.

  • Flux-Flow Type Josephson Oscillator with a Coupling Circuit to a Quasiparticle Detector

    Tadao NAGATSUMA  Keiji ENPUKU  Fujio IRIE  Keiji YOSHIDA  

     
    LETTER-Other Devices

      Vol:
    E66-E No:11
      Page(s):
    680-681

    Properties of the flux-flow type Josephson oscillator coupled to a quasiparticle detector through a planar stripline cavity are investigated in the millimeter wave region. The present coupling scheme is essential for magnetic field isolation between the oscillator and the Josephson rf-devices, as well as filtering of spurious harmonics.

  • Novel Lightwave-Interferometric Phase Detection for Phase Stabilization of Two-Tone Coherent Millimeter-Wave/Microwave Carrier Generation

    Shota TAKEUCHI  Kazuki SAKUMA  Kazutoshi KATO  Yasuyuki YOSHIMIZU  Yu YASUDA  Shintaro HISATAKE  Tadao NAGATSUMA  

     
    PAPER-Optoelectronics

      Vol:
    E99-C No:9
      Page(s):
    1048-1055

    For phase stabilization of two-tone coherent millimeter-wave/microwave carrier generation, two types of phase detection schemes were devised based on lightwave interferometric technique, the Mach-Zehnder interferometric method and the pseudo Mach-Zehnder interferometric method. The former system showed clear eye patterns at both OOK and PSK modulations of 1 Gbit/s on the 12.5-GHz carrier. The latter system demonstrated the error-free transmission at OOK modulation of 11 Gbit/s on the 100-GHz carrier.

  • Measurement of High-Speed Devices and Integrated Circuits Using Electro-Optic Sampling Technique

    Tadao NAGATSUMA  

     
    INVITED PAPER-Opto-Electronics Technology for LSIs

      Vol:
    E76-C No:1
      Page(s):
    55-63

    Recent progress in high-speed semiconductor devices and integrated circuits (ICs) has outpaced the conventional measuring and testing instruments. With advent of ultrashort-pulse laser technology, the electro-optic sampling (EOS) technique based on the Pockels effect has become the most promising solution way of overcoming the frequency limit, whose bandwidth is approaching a terahertz. This paper reviews recent progress on the research of the EOS technniques for measuring ultrahigh-speed electronic devices and ICs. It describes both the principle of the EOS and the key technologies used for noncontact probing of ICs. Internal-node measurements of state-of-the-art high-speed ICs are also presented.

  • Optical Sampling of Electrical Signals in Poled Polymeric Media

    Makoto YAITA  Tadao NAGATSUMA  

     
    PAPER-Optical/Microwave Devices

      Vol:
    E76-C No:2
      Page(s):
    222-228

    This paper theoretically evaluates the external electro-optic (EO) sampling of high-speed electrical signals using poled polymers as materials for a proximity electric-field sensor. Based on the derivation of the half-wave voltage and the analysis of a static electric field coupled to the polymeric media placed over IC interconnections, invasiveness, voltage sensitivity, and spatial resolution have been discussed. The polymeric sensors have shown to be used in contact with the IC interconnections with negligibly small invasiveness, thus making polymeric sensors provide higher sensitivity and spatial resolution than inorganic crystals such as GaAs and KD*P.

  • FOREWORD

    Masayuki IZUTSU  Masahiro TSUCHIYA  Tadao NAGATSUMA  

     
    FOREWORD

      Vol:
    E86-C No:7
      Page(s):
    1121-1122
1-20hit(28hit)