Publication List
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M. Takiguchi, XXXXX, XXXXX, XXXXX, XXXXX, XXXXX, XXXXX, XXXXX, XXXXX, and XXXXX
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#XXXXX, #M. Takiguchi, XXXXX, XXXXX, XXXXX, and XXXXX (# :Equal contribution)
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2024
Light Emission Characteristics in Nitride Semiconductor Nanowires Fabricated by Top‐down Method
K. Tateno, M. Takiguchi, K. Ebata, S. Sasaki, K. Kumakura, and Y. Taniyasu
Phys. Status Solidi (a), 2400078 (2024)Submitted Diffusion-dominated luminescence dynamics of CsPbBr3 studied using cathodoluminescence and micro-photoluminescence spectroscopy
S. Nekita, S. Yanagimoto, T. Sannomiya, K. Akiba, M. Takiguchi, H. Sumikura, I. Takagi, K. G. Nakamura, S. Yip, Y. Meng, J. C. Ho, T. Okuyama, M. Murayama, H. Saito
Nano Lett., 24, 3971 (2024)Vector beam generation from standing hollow GaN nanowire lasers on sapphire substrate
M. Takiguchi, S. Sergent, B. Damilano, S. Vézian, S. Chenot, N. Yazigi, P. Heidt, T. Tsuchizawa, T. Yoda, H. Sumikura, A. Shinya, and M. Notomi
ACS Photonics, 11, 789 (2024), [arXiv:2311.07916], Featured in New scientist
2023
Damage protection from focused ion beam process toward nanocavity-implemented compound semiconductor nanowire lasers
M. Takiguchi, G. Zhang, S. Sasaki, K. Tateno, C. John, M. Ono, H. Sumikura, A. Shinya, and M. Notomi
Nanotechnology, 34, 135301 (2023)
2022
Probing the Ginzburg-Landau potential for lasers using higher-order photon correlations
N. Takemura, M. Takiguchi, and M. Notomi
J. Phys. Soc. Jpn., 91, 074401 (2022), [arXiv:1908.08679]All-optical dynamic modulation of spontaneous emission rate in hybrid optomechanical emitter-cavity systems
F. Tian, H. Sumikura, E. Kuramochi, M. Takiguchi, M. Ono, A. Shinya, and M. Notomi
Optica, 9, 309 (2022), [arXiv:1901.07691], Featured in In Other Journals in "Science"
2021
Thermal effect of InP/InAs nanowire lasers integrated on different optical platforms
M. Takiguchi, G. Zhang, E. Frandsen, H. Sumikura, T. Tsuchizawa, S. Sasaki, A. Shinya, K. Oguri, H. Gotoh, and M. Notomi
OSA Continuum, 4, 1838 (2021)Excitonic nonlinear shifts in photonic crystal nanocavities with buried multiple quantum wells
M. Takiguchi, K. Nozaki, H. Sumikura, N. Takemura, T. Fujii, E. Kuramochi, A. Shinya, S. Matsuo, and M. Notomi
Appl. Phys. Lett., 118, 111101 (2021), Selected as an Editors' PickEmulating the local Kuramoto model with an injection-locked photonic crystal laser array
N. Takemura, K. Takata, M. Takiguchi, and M. Notomi
Sci. Rep. , 11, 8587 (2021), [arXiv:2010.16236]Low- and high-β lasers in Class-A limit: photon statistics, linewidth, and the laser-phase transition analogy
N. Takemura, M. Takiguchi, and M. Notomi
J. Opt. Soc. Am. B, 38, 699 (2021), [arXiv:1904.01743], Selected as an Editors' Pick
2020
A hybrid nanowire photodetector integrated in a silicon photonic crystal
M. Takiguchi, S. Sasaki, K. Tateno, E. Chen, K. Nozaki, S. Sergent, E. Kuramochi, G. Zhang, A. Shinya, and M. Notomi
ACS Photonics, 7, 3467 (2020), Selected as a Suppl. Journal CoverNanowire-based telecom-band light emitting diodes with efficient light extraction
G. Zhang, D. Gnatek, M. Takiguchi, X. Xu, K. Tateno, S. Sasaki, T. Tawara, and H. Gotoh
Jpn. J. Appl. Phys., 59, 105003 (2020)Nanowire photonics toward wide wavelength range and subwavelength confinement [Invited]
M. Notomi, M. Takiguchi, S. Sergent, G. Zhang, and H. Sumikura
Opt. Mater. Express, 10, 2560 (2020), Selected as an Editors' PickDesigns toward synchronization of optical limit cycles based on coupled silicon photonic crystal microcavities
N. Takemura, M. Takiguchi, and M. Notomi
Opt. Express, 28, 27657 (2020), [arXiv:2005.11127], [erratum]Photon correlation measurements of stochastic limit cycles emerging from high-Q nonlinear silicon photonic crystal microcavities
N. Takemura, M. Takiguchi, H. Sumiukura, E. Kuramochi, A. Shinya, and M. Notomi
Phys. Rev. A, 102, 011501(R) (2020), [arXiv:2001.02838]Low-threshold lasing up to 360 K in all-dielectric subwavelength-nanowire nanocavities
S. Sergent, M. Takiguchi, T. Tsuchizawa, H. Taniyama, and M. Notomi
ACS Photonics, 7, 1104 (2020)All-optical InAsP/InP nanowire switches integrated in a Si photonic crystal
M. Takiguchi, N. Takemura, K. Tateno, K. Nozaki, S. Sasaki, S. Sergent, E. Kuramochi, T. Wasao, A. Yokoo, A. Shinya, and M. Notomi
ACS Photonics, 7, 1016 (2020), Selected as a Suppl. Journal Cover
2019
Subliming GaN into ordered nanowire arrays for ultraviolet and visible nanophotonics
S. Sergent, B. Damilano, S. Vézian, S. Cheno, M. Takiguchi, T. Tsuchizawa, H. Taniyama, and M. Notomi
ACS Photonics, 6, 3321 (2019)Mid-infrared lasing of single wurtzite InAs nanowire
H. Sumikura, G. Zhang, M. Takiguchi, N. Takemura, A. Shinya, H. Gotoh, and M. Notomi
Nano Lett., 19, 8059 (2019)Nanowire-induced nanocavities in photonic crystal disks
S. Sergent, M. Takiguchi, T. Tsuchizawa, H. Taniyama, and M. Notomi
ACS Photonics, 6, 1132 (2019)Lasing thresholds and photon statistics in high-β buried multiple quantum well photonic crystal nanocavity lasers
N. Takemura, M. Takiguchi, E. Kuramochi, A. Shinya, T. Sato, K. Takeda, S. Matsuo, and M. Notomi
Phys. Rev. A, 99, 053820 (2019)Telecom-band lasing in single InP/InAs heterostructure nanowires at room temperature
G. Zhang, M. Takiguchi, K. Tateno, T. Tawara, M. Notomi, and H. Gotoh
Sci. Adv., 5, eaat8896 (2019), [NTT Press Release]Wurtzite GaP nanowire grown by using tertiarybutylchloride and used to fabricate solar cell
K. Tateno, G. Zhang, S. Sasaki, M. Takiguchi, and K. Kumakura
Jpn. J. Appl. Phys., 58, 015004 (2019)
2018
Room temperature continuous-wave nanolaser diode utilized by ultrahigh-Q few-cell photonic crystal nanocavities
E. Kuramochi, H. Duprez, J. Kim, M. Takiguchi, K. Takeda, T. Fujii, K. Nozaki, A. Shinya, H. Sumikura, H. Taniyama, S. Matsuo, and M. Notomi
Opt. Express, 26, 26598 (2018), Featured in Spotlight on OpticsAlternating InAsP/InP heterostructure nanowires grown with tertiary-butyl chloride
K. Tateno, G. Zhang, M. Takiguchi, and H. Gotoh
Nano Futures, 2, 045006 (2018)Direct modulation of a single InP/InAs nanowire light emitting diode
M. Takiguchi, G. Zhang, S. Sasaki, K. Nozaki, E. Chen, K. Tateno, T. Tawara, A. Shinya, H. Gotoh, and M. Notomi
Appl. Phys. Lett., 112, 251106 (2018)
2017
Nanomanipulating and tuning ultraviolet ZnO-nanowire-induced photonic crystal nanocavities
S. Sergent, M. Takiguchi, T. Tsuchizawa, A. Yokoo, H. Taniyama, E. Kuramochi, and M. Notomi
ACS Photonics, 4, 1040 (2017)Continuous-wave operation and 10-Gb/s direct modulation of InAsP/InP sub-wavelength nanowire laser on silicon photonic crystal
M. Takiguchi, A. Yokoo, K. Nozaki, M. D. Birowosuto, K. Tateno, G. Zhang, E. Kuramochi, A. Shinya, and M. Notomi
APL Photonics, 2, 046106 (2017), [arXiv:1612.03952], [NTT Press Release], [AIP Press Release]Subwavelength Nanowire Lasers on a Silicon Photonic Crystal Operating at Telecom Wavelengths
#A. Yokoo, #M. Takiguchi, M. D. Birowosuto, K. Tateno, G. Zhang, E. Kuramochi, A. Shinya, H. Taniyama, and M. Notomi (# :Equal contribution)
ACS Photonics, 4, 355 (2017)Temperature-Dependent Spontaneous Emission of PbS Quantum Dots inside Photonic Nanostructures at Telecommunication Wavelength
M. D. Birowosuto, M. Takiguchi, A. Olivier, L. Y. M. Tobing, E. Kuramochi, A. Yokoo, W. Hong, and M. Notomi
Opt. Commun., 383, 555 (2017)
2016
Optomechanical oscillator pumped and probed by optically two isolated photonic crystal cavity systems
F. Tian, H. Sumikura, H. Taniyama, M. Takiguchi, and M. Notomi
Opt. Express, 24, 28039 (2016)Design of nanowire-induced nanocavities in grooved 1D and 2D SiN photonic crystals for the ultra-violet and visible ranges
S. Sergent, M. Takiguchi, H. Taniyama, A. Shinya, E. Kuramochi, and M. Notomi
Opt. Express, 24, 26792 (2016)Systematic study of thresholdless oscillation in high-β buried multiple-quantum-well photonic crystal nanocavity lasers
M. Takiguchi, H. Taniyama, H. Sumikura, M. D. Birowosuto, E. Kuramochi, A. Shinya, T. Sato, K. Takeda, S. Matsuo, and M. Notomi
Opt. Express, 24, 3441 (2016)
2015
Bridging the Gap Between the Nanometer-Scale Bottom-Up and Micrometer-Scale Top-Down Approaches for Site-Defined InP/InAs Nanowires
G. Zhang, C. Rainville, A. Salmon, M. Takiguchi, K. Tateno, and H. Gotoh
ACS Nano, 9, 10580 (2015)
2014
Spontaneous emission inhibition of telecom-band quantum disks inside single nanowire on different substrates
M. D. Birowosuto, G. Zhang, A. Yokoo, M. Takiguchi, and M. Notomi
Opt. Express, 22, 11713 (2014), [arXiv:1406.0011]Movable High-Q Nanoresonators Realized by Semiconductor Nanowires on a Si Photonic Crystal Platform
M. D. Birowosuto, A. Yokoo, G. Zhang, K. Tateno, E. Kuramochi, H. Taniyama, M. Takiguchi, and M. Notomi
Nat. Mater., 13, 279 (2014), [arXiv:1403.4237], [NTT Press Release], Featured in Reserch Highlight in Nature Photon.
2013
Enhanced and suppressed spontaneous emission from a buried heterostructure photonic crystal cavity
M. Takiguchi, H. Sumikura, M. D. Birowosuto, E. Kuramochi, T. Sato, K. Takeda, S. Matsuo, and M. Notomi
Appl. Phys. Lett., 103, 091113 (2013)Carbon nanotube/polymer composite coated tapered fiber for four wave mixing based wavelength conversion
B. Xu, M. Omura, M. Takiguchi, A. Martinez, T. Ishigure, S. Yamashita, and T. Kuga
Opt. Express, 21, 3651 (2013)
2012
Design for ultrahigh-Q position-controlled nanocavities of single semiconductor nanowires in two-dimensional photonic crystals
M. D. Birowosuto, A. Yokoo, H. Taniyama, E. Kuramochi, M. Takiguchi, and M. Notomi
J. Appl. Phys., 112, 113106 (2012), [arXiv:1211.3205]
2011
Saturated absorption spectroscopy of acetylene molecules with an optical nanofiber
M. Takiguchi, Y. Yoshikawa, T. Yamamoto, K. Nakayama, and T. Kuga
Opt. lett., 36, 1254 (2011)