Carbon nanotube-based, serially connected terahertz sensor with enhanced thermal and optical efficiencies
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[1] K. Sugioka,et al. Improvement in laser-based micro-processing of carbon nanotube film devices , 2022, Applied Physics Express.
[2] Lulu Wang,et al. Terahertz Imaging for Breast Cancer Detection , 2021, Sensors.
[3] Chiko Otani,et al. Development of 300 GHz walk-through body scanner for the security gate applications , 2021, Optical Engineering + Applications.
[4] Akram Alomainy,et al. Screen Printing Carbon Nanotubes Textiles Antennas for Smart Wearables , 2021, Sensors.
[5] K. Kawase,et al. Real-time wide dynamic range spectrometer using a rapidly wavelength-switchable terahertz parametric source. , 2021, Optics letters.
[6] D. Suzuki,et al. Robot-assisted, source-camera-coupled multi-view broadband imagers for ubiquitous sensing platform , 2021, Nature Communications.
[7] R. Abd‐Alhameed,et al. Theoretical Study of the Input Impedance and Electromagnetic Field Distribution of a Dipole Antenna Printed on an Electrical/Magnetic Uniaxial Anisotropic Substrate , 2021, Electronics.
[8] T. Okamoto,et al. Terahertz and infrared response assisted by heat localization in nanoporous graphene , 2021 .
[9] C. Otani,et al. Dynamical visualization of anisotropic electromagnetic re-emissions from a single metal micro-helix at THz frequencies , 2021, Scientific Reports.
[10] K. Ishibashi,et al. A Terahertz Video Camera Patch Sheet with an Adjustable Design based on Self‐Aligned, 2D, Suspended Sensor Array Patterning , 2021, Advanced Functional Materials.
[11] H. Minamide,et al. Security screening system based on terahertz-wave spectroscopic gas detection. , 2021, Optics express.
[12] H. Minamide,et al. Spectral phase singularity in a transmission-type double-layer metamaterial , 2020 .
[13] D. Suzuki,et al. Series Photothermoelectric Coupling Between Two Composite Materials for a Freely Attachable Broadband Imaging Sheet , 2020 .
[14] Jacob A. Spies,et al. Terahertz Spectroscopy of Emerging Materials , 2020 .
[15] Yachao Zhang,et al. Video-Rate Ring-Array Ultrasound and Photoacoustic Tomography , 2020, IEEE Transactions on Medical Imaging.
[16] O. Crosby,et al. nanotubes , 2020, Catalysis from A to Z.
[17] F. Léonard,et al. Origami Terahertz Detectors Realized by Inkjet Printing of Carbon Nanotube Inks , 2020 .
[18] D. Suzuki,et al. Flexible terahertz imaging systems with single-walled carbon nanotube films , 2020 .
[19] Kwang‐Suk Jang,et al. Solution-Processed Carbon Nanotube Buckypapers for Foldable Thermoelectric Generators. , 2019, ACS applied materials & interfaces.
[20] H. Ahmad,et al. Strain-induced photo-thermoelectric terahertz detection , 2018, AIP Advances.
[21] Thomas Deffieux,et al. Ultrasonic fat fraction quantification using in vivo adaptive sound speed estimation , 2018, Physics in medicine and biology.
[22] Koichiro Tanaka,et al. Reconsideration of the relaxational and vibrational line shapes of liquid water based on ultrabroadband dielectric spectroscopy. , 2018, Physical chemistry chemical physics : PCCP.
[23] A. Yamamoto,et al. An Integrated Approach to Thermoelectrics: Combining Phonon Dynamics, Nanoengineering, Novel Materials Development, Module Fabrication, and Metrology , 2018, Advanced Energy Materials.
[24] Y. Nakagawa,et al. Fermi-Level-Controlled Semiconducting-Separated Carbon Nanotube Films for Flexible Terahertz Imagers , 2018, ACS Applied Nano Materials.
[25] Y. Ochiai,et al. Thermal Device Design for a Carbon Nanotube Terahertz Camera , 2018, ACS omega.
[26] D. Tsentalovich,et al. Carbon nanotube woven textile photodetector , 2018 .
[27] Domingo Mery,et al. Threat Objects Detection in X-ray Images Using an Active Vision Approach , 2017 .
[28] S. Oda,et al. A flexible and wearable terahertz scanner , 2016, Nature Photonics.
[29] T. Kawai,et al. Simple Salt‐Coordinated n‐Type Nanocarbon Materials Stable in Air , 2016 .
[30] M. Shur,et al. Resonant plasmonic terahertz detection in graphene split-gate field-effect transistors with lateral p–n junctions , 2016, 1604.04972.
[31] Safumi Suzuki,et al. Oscillation up to 1.92 THz in resonant tunneling diode by reduced conduction loss , 2016 .
[32] Y. Bonnassieux,et al. Highly reproducible, hysteresis-free, flexible strain sensors by inkjet printing of carbon nanotubes , 2015 .
[33] Hiroshi Ito,et al. InP/InGaAs Fermi-level managed barrier diode for broadband and low-noise terahertz-wave detection , 2015 .
[34] Takeshi Fujita,et al. Multifunctional Porous Graphene for High‐Efficiency Steam Generation by Heat Localization , 2015, Advanced materials.
[35] Y. Maniwa,et al. Tuning of the thermoelectric properties of one-dimensional material networks by electric double layer techniques using ionic liquids. , 2014, Nano letters.
[36] K. Hata,et al. Length-dependent plasmon resonance in single-walled carbon nanotubes. , 2014, ACS nano.
[37] C. Otani,et al. Kinetics of Polymorphic Transitions of Cyclohexanol Investigated by Terahertz Absorption Spectroscopy , 2014 .
[38] K. Kawase,et al. Ultrabright continuously tunable terahertz-wave generation at room temperature , 2014, Scientific Reports.
[39] S. Kishimoto,et al. One-step sub-10 μm patterning of carbon-nanotube thin films for transparent conductor applications. , 2014, ACS nano.
[40] Choongho Yu,et al. Flexible power fabrics made of carbon nanotubes for harvesting thermoelectricity. , 2014, ACS nano.
[41] H. Kataura,et al. Giant Seebeck coefficient in semiconducting single-wall carbon nanotube film , 2014, 1401.7469.
[42] J. Kono,et al. Plasmonic nature of the terahertz conductivity peak in single-wall carbon nanotubes. , 2013, Nano letters.
[43] Toshihide Kamata,et al. Flexible and lightweight thermoelectric generators composed of carbon nanotube–polystyrene composites printed on film substrate , 2013 .
[44] M. Heddebaut,et al. Road traffic information using a dedicated radio beacon , 2013 .
[45] Yukio Kawano,et al. Terahertz waves: a tool for condensed matter, the life sciences and astronomy , 2013 .
[46] Takeo Yamada,et al. Torsion-sensing material from aligned carbon nanotubes wound onto a rod demonstrating wide dynamic range. , 2013, ACS nano.
[47] K Shibata,et al. Photon-assisted tunneling through self-assembled InAs quantum dots in the terahertz frequency range. , 2012, Physical review letters.
[48] Naoki Oda,et al. Uncooled bolometer-type Terahertz focal plane array and camera for real-time imaging , 2010 .
[49] Masayoshi Tonouchi,et al. Cutting-edge terahertz technology , 2007 .
[50] Xicheng Zhang,et al. Materials for terahertz science and technology , 2002, Nature materials.
[51] Domingo Mery,et al. X-Ray Baggage Inspection With Computer Vision: A Survey , 2020, IEEE Access.
[52] Yukio Kawano,et al. Terahertz Imaging and Spectroscopy as a Tool for Non-destructive and Non-contact Quality Inspections of Medical Drugs and Polymer Films , 2017 .
[53] Kodo Kawase,et al. Kilowatt-peak Terahertz-wave Generation and Sub-femtojoule Terahertz-wave Pulse Detection Based on Nonlinear Optical Wavelength-conversion at Room Temperature , 2014 .