Publications

  • 48. Rotationally resolved gas-phase spectrum of the A–X electronic transition for the cyanogen halide radical cation ICN+
    Mitsunori Araki, Takumi Ito, Shoma Hoshino, Koichi Tsukiyama, Journal of Molecular Spectroscopy 111675-111675 (2022)
    doi:10.1016/j.jms.2022.111675 NEW
  • 47. Gas-phase CH-Overtone band spectra of methyl acetate and ethyl acetate via incoherent broad-band cavity-enhanced absorption spectroscopy
    Mitsunori Araki, Takeru Sato, Takahiro Oyama, Shoma Hoshino, Koichi Tsukiyama, Chemical Physics Letters 796 139568-139568 (2022)
    doi:10.1016/j.cplett.2022.139568 NEW
  • 46. Rapid measurements of hydrogen cyanide concentration in combustion gas via terahertz spectroscopy
    Mitsunori Araki, Ken Matsuyama, Current Applied Physics 36 83-87 (2022)
    doi:10.1016/j.cap.2021.12.015 NEW
  • 45. Laboratory Optical Spectroscopy of Vibronic Transitions of the Thiophenoxy Radical
    Haruka T. Sato, Mitsunori Araki, Takahiro Oyama, and Koichi Tsukiyama, Astronomical Journal, 899, 32 (2020)
    doi:10.3847/1538-4357/ab9d8a
  • 44. Observations and Analysis of Absorption Lines including J = K Rotational Levels of CH3CN: The Envelope of Sagittarius B2(M)
    Mitsunori Araki, Shuro Takano, Nobuhiko Kuze, Yoshiaki Minami, Takahiro Oyama, Kazuhisa Kamegai, Yoshihiro Sumiyoshi, and Koichi Tsukiyama, Monthly Notices of the Royal Astronomical Society, 497, 1521-1535, (2020).
    doi: 10.1093/mnras/staa1754
  • 43. Reevaluation of C4H Abundance Based on the Revised Dipole Moment
    Takahiro Oyama, Hironori Ozaki, Yoshihiro Sumiyoshi, Mitsunori Araki, Shuro Takano, Nobuhiko Kuze, and Koichi Tsukiyama, Astrophysical Journal, 890, 39 (2020).
    doi: 10.3847/1538-4357/ab6a0a
  • 42. Mid-Infrared Amplified Spontaneous Emission from the f'0g+ (1D2) Ion-Pair State and Spectroscopic Characterization of the Shallow 0g+ (ab) Valence State of I2
    Shoma Hoshino, Takashi Ishiwata, Yukio Nakano, Masaru Fukushima, Hisashi Fujiwara, Mitsunori Araki, and Koichi Tsukiyama, Journal of Physical Chemistry A, 123, 7590-7596 (2019).
    doi: 10.1021/acs.jpca.9b06451
  • 41. Precise Observations of the 13CO/C18O Isotope Ratios toward the Galactic Center
    Aya Ubagai, Takahiro Oyama, Mitsunori Araki, Shuro Takano, Yoshiaki Minamai, Yoshihiro Sumiyoshi, Nobuhiko Kuze, Koichi Tsukiyama, Research Notes of the AAS, 3, 78 (2019).
    doi: 10.3847/2515-5172/ab2463
  • 40. Terahertz Spectroscopy of CO and NO: The First Step Toward Temperature and Concentration Detection for Combustion Gases in Fire Environments
    Mitsunori Araki, Yuuki Tabata, Naofumi Shimizu, Ken Matsuyama, Journal of Molecular Spectroscopy, 361, 34-39 (2019).
    doi: 10.1016/j.jms.2019.05.007
  • 39. Wavelength dependence of Poly(p-hydroxystyrene) Ablation by Mid-Infrared Free-Electron Laser
    Minoru Toriumi, Takayasu Kawasaki, Mitsunori Araki, Takayuki Imai, and Koichi Tsukiyama, J. Photopolymer Sci. Tech., 32, 189-193 (2019).
    doi: 10.3847/1538-4357/aa8637
  • 38. Long carbon chains in the warm-carbon-chain-chemistry source L1527: First detection of C7H in molecular clouds
    Mitsunori Araki, Shuro Takano, Nami Sakai, Satoshi Yamamoto, Takahiro Oyama, Nobuhiko Kuze, and Koichi Tsukiyama, Astrophysical Journal, 847, 51 (2017)
    doi: 10.3847/1538-4357/aa8637
  • 37. Antimicrobial effect of blue light using Porphyromonas gingivalis pigment
    Ayaka Yoshida, Haruka Sasaki, Toshizo Toyama, Mitsunori Araki, Jun Fujioka, Koichi Tsukiyama, Nobushiro Hamada, and Fumihiko Yoshino, Scientific Reports, 7, 5225 (2017)
    doi: 10.1038/s41598-017-05706-1
  • 36. Time resolved temperature measurement of polymer surface irradiated by mid-IR Free electron laser
    Mitsunori Araki, Tomoyuki Chiba, Takahiro Oyama, Takayuki Imai, and Koichi Tsukiyama, Nuclear Inst. and Methods in Physics Research, B, 405, 11-14 (2017)
    doi: 10.1016/j.nimb.2017.04.093
  • 35. Precise observations of the 12C/13C ratios of HC3N in the low-mass star-forming region L1527
    Mitsunori Araki, Shuro Takano, Nami Sakai, Satoshi Yamamoto, Takahiro Oyama, Nobuhiko Kuze, and Koichi Tsukiyama, Astrophysical Journal, 833, 291 (2016)
    doi: 10.3847/1538-4357/833/2/291
  • 34. Infrared amplified spontaneous emission from the 0g+ (3P0) and 0g+ (1D2) ion-pair states of molecular bromine
    Shoma Hoshino, Mitsunori Araki, Takashi Ishiwata, and Koichi Tsukiyama, Physical Chemistry Chemical Physics, 18, 19464-19471 (2016)
    doi: 10.1039/C6CP02117D
  • 33. Collision induced state-to-state energy transfer dynamics between the 2u (1D2) and 2g (1D2) ion-pair states of I2
    Shoma Hoshino, Yukio Nakano, Mitsunori Araki, Takashi Ishiwata, and Koichi Tsukiyama, Physical Chemistry Chemical Physics, 18,14292-14298 (2016)
    doi: 10.1039/C6CP00222F
  • 32. Infrared radiative decay dynamics from the γ 1u (3P2), H 1u (3P1), and 1u (1D2) ion-pair states of I2 observed by a perturbation facilitated optical-optical double resonance technique
    Shoma Hoshino, Mitsunori Araki, Yukio Nakano, Takashi Ishiwata, and Koichi Tsukiyama, The Journal of Chemical Physics,144, 034302 (2016)
    doi:10.1063/1.4939639
  • 31. Laboratory Optical Spectroscopy of the Phenoxy Radical as a Candidate for Diffuse Interstellar Bands
    Mitsunori Araki, Yuki Matsushita and Koichi Tsukiyama, Astronomical Journal, 150, 113 (2015)
    doi:10.1088/0004-6256/150/4/113
  • 30. Laboratory Optical Spectroscopy of Thiophenoxy Radical and Its Profile Simulation as a Diffuse Interstellar Band Based on Rotational Distribution by Radiation and Collisions
    Mitsunori Araki, Kei Niwayama and Koichi Tsukiyama, Astronomical Journal, 148, 87(2014)
    doi:10.1088/0004-6256/148/5/87
  • 29. Far-infrared amplified emission from the v = 1 autoionizing Rydberg states of NO
    Mitsunori Araki, Kyoko Abe, Hiroki Furukawa and Koichi Tsukiyama, Chemical Physics Letters, 601, 181 (2014)
    doi:10.1016/j.cplett.2014.03.070
  • 28. Far-infrared amplified spontaneous emission and collisional energy transfer between the E 0+g (3P2) and D 0+u (3P2) ion-pair states of I2
    Shoma Hoshino, Mitsunori Araki, and Koichi Tsukiyama, Journal of Chemical Physics, 140, 104309 (2014)
    doi:10.1063/1.4867895
  • 27. Emission spectra of 1,2,3-butatriene cation H2CCCCH2+ by hollow-cathode glow discharge and extended negative glow discharge
    Mitsunori Araki, Satoshi Uchida, Yuki Matsushita, Koichi Tsukiyama, Journal of Molecular Spectroscopy, 297, 51-57 (2014).
    doi:10.1016/j.jms.2014.01.009
  • 26. Microwave spectroscopy of AgCCH and AuCCH in the X1Σ+ states
    Toshiaki Okabayashi, Hirofumi Kubota, Mitsunori Araki and Nobuhiko Kuze, Chemical Physics Letters, 577, 11-15 (2013).
    doi:10.1016/j.cplett.2013.05.027
  • 25. Far infrared stimulated emission from the ns and nf Rydberg states of NO
    Hiroki Furukawa, Mitsunori Araki, Hiroya Umeki, and Koichi Tsukiyama, Journal of Chemical Physics, 138, 244311 (2013)
    doi:10.1063/1.4809739
  • 24. Laser induced amplified spontaneous emission from the f 0g+ (3P0) ion-pair state of I2
    Shoma Hoshino, Mitsunori Araki, Furukawa Hiroki, Stephen Ross and Koichi Tsukiyama, Journal of Chemical Physics, 138, 104316 (2013)
    doi:10.1063/1.4794159
  • 23. Radio Search for H2CCC toward HD 183143 as a Candidate for a Diffuse Interstellar Band Carrier
    Mitsunori Araki, Shuro Takano, Hiromichi Yamabe, Koichi Tsukiyama and Nobuhiko Kuze, Astrophysical Journal Letters, 753, L11 (2012)
    doi:10.1088/2041-8205/753/1/L11
  • 22. A Search for Interstellar Carbon Chain Alcohol HC4OH in Star-Forming Region L1527 and Dark Cloud TMC-1
    Mitsunori Araki, Shuro Takano, Hiromichi Yamabe, Naohiro Koshikawa, Koichi Tsukiyama, Aya Nakane, Toshiaki Okabayashi, Arisa Kunimatsu and Nobuhiko Kuze, Astrophysical Journal, 744, 163 (2012)
    doi:10.1088/0004-637X/744/2/163
  • 21. CO2 column-averaged volume mixing ratio derived over Tsukuba from measurements by commercial airlines
    M. Araki, I. Morino, T. Machida, Y. Sawa, H. Matsueda, H. Ohyama, T. Yokota, and O. Uchino, Atmospheric Chemistry and Physics, 10, 7659-7667 (2010)
    doi:10.5194/acp-10-7659-2010
  • 20. Laboratory detection of a linear carbon chain alcohol: HC4OH and its deuterated Species,
    Mitsunori Araki and Nobuhiko Kuze, Astrophysical Journal Letter, 680, L93-L96 (2008)
    doi:10.1086/589743
  • 19. Microwave spectrum of the H2DO+ ion: inversion-rotation transitions and inversion splitting
    Takashi Furuya, Shuji Saito, and Mitsunori Araki, Journal of Chemical Physics, 127, 244314 (2007)
    doi:10.1063/1.2813352
  • 18. Electronic spectrum of the hydrocarbon cation CCCCH3+
    Eunsook Kim, Mitsunori Araki, Richa Chauhan, Petre Birza, and John P. Maier, Molecular Physics, 104, 2885-2890 (2006)
    doi:10.1080/00268970600866694
  • 17. Gas phase electronic spectrum of propadienylidene C3H2
    Elena Achkasova, Mitsunori Araki, Alexey Denisov, and John P. Maier, Journal of Molecular Spectroscopy, 237, 70-75 (2006)
    doi:10.1016/j.jms.2006.02.013
  • 16. Electronic absorption spectrum of a nonlinear carbon chain: trans-C6H4+
    Mitsunori Araki, Tomasz Motylewski, Przemyslaw Kolek and John P. Maier, Physical Chemistry Chemical Physics, 7, 2138-2141 (2005)
    doi:10.1039/B500052A
  • 15. Rotational analysis of the 2B1-2A2 electronic spectrum of the allyl radical
    Elena Achkasova, Mitsunori Araki, Alexey Denisov, and John P. Maier, Molecular Physics, 103, 1555-1560 (2005)
    doi:10.1080/00268970500044830
  • 14. Rotational Resolved Electronic Spectrum of Propadienylidene
    Petre Birza, Andrei Chirokolava, Mitsunori Araki, Przemyslaw Kolek and John P. Maier, Journal of Molecular Spectroscopy, 229, 276-282 (2005)
    doi:10.1016/j.jms.2004.10.001
  • 13. Gas phase detection of cyclic B3: 22E' - X2A1' electronic origin band
    P. Cias, M. Araki, A. Denisov and J.P. Maier, Journal of Chemical Physics, 121, 6776-6778 (2004)
    doi:10.1063/1.1791153
  • 12. New Laboratory Data of a Molecular Band at 4429 A
    M. Araki, H. Linnartz, P. Kolek, H. Ding, A. Boguslavskiy, A. Denisov, T. W. Schmidt, T. Motylewski, P. Cias, and J. P. Maier, The Astrophysical Journal, 616, 1301-1310 (2004)
    doi:10.1086/424959
  • 11. Rotationally resolved electronic spectroscopy of a nonlinear carbon chain radical C6H4+
    Dmitriy Khoroshev, Mitsunori Araki, Przemyslaw Kolek, Petre Birza, Andrei Chirokolava, and John P. Maier, Journal of Molecular Spectroscopy, 227, 81-89 (2004)
    doi:10.1016/j.jms.2004.05.019
  • 10. Sulfur terminated nanowires in the gas phase: laser spectroscopy and mass spectrometry
    A. Denisov, T.W. Schmidt, A.E. Boguslavskiy, H. Ding, M. Araki, and J. P. Maier, International Journal of Mass Spectrometry, 233, 131-136 (2004)
    doi:10.1016/j.ijms.2003.12.026
  • 9. Electronic spectroscopy of the nonlinear carbon chains C4H4+ and C8H4+
    Mitsunori Araki, Pawel Cias, Alexey Denisov, Jan Fulara, and John P. Maier, Canadian Journal of Chemistry, 82, 848-853 (2004)
    doi:10.1139/v04-013
  • 8. A spectral survey of the Orion Nebula from 455-507 GHz
    Glenn. J. White, M. Araki, J. S. Greaves, M. Ohishi, and N. S. Hiffinbottom, Astronomy & Astrophysics, 407, 589-607 (2003)
    doi:10.1051/0004-6361:20030841
  • 7. High resolution electronic spectroscopy of a non-linear carbon chain radical C6H4+
    Mitsunori Araki, Harold Linnartz, Pawel Cias, Alexey Denisov, Jan Fulara, Anton Batalov, Ivan Shnitko and John P. Maier, Journal of Chemical Physics, 118, 10561-10565 (2003)
    doi:10.1063/1.1575736
  • 6. Submillimeter-Wave Spectra of H2Cl+ and its Isotopic Species: Molecular Structure
    M. Araki, T. Furuya, and S. Saito, Journal of Molecular Spectroscopy, 210, 132-136 (2001)
    doi:10.1006/jmsp.2001.8450
  • 5. Microwave spectrum of the inversion-rotation transitions of the D3O+ ion: Δk = ±3n interaction and equilibrium structure
    Mitsunori Araki, Hiroyuki Ozeki, and Shuji Saito, Molecular Physics, 97, 177-183 (1999)
    doi:10.1080/00268979909482820
  • 4. Experimental determination of the ground-state inversion splitting in D3O+ by microwave spectroscopy
    Mitsunori Araki, Hiroyuki Ozeki, and Shuji Saito, Journal of Chemical Physics, Communications, 109, 5707-5709 (1998)
    doi:10.1063/1.477191
  • 3. Microwave Spectrum of the SD3+ Ion: Molecular Structure,
    Mitsunori Araki, Hiroyuki Ozeki, and Shuji Saito, Journal of Molecular Spectroscopy, 192, 228-230 (1998)
    doi:10.1006/jmsp.1998.7691
  • 2. Laboratory Measurement of the Pure Rotational Transitions of HCNH+ and its Isotopic Species
    Mitsunori Araki, Hiroyuki Ozeki, and Shuji Saito, The Astrophysical Journal, 496, L53-L55 (1998)
    doi:10.1086/311245
  • 1. Two-Color Zero Kinetic Energy Photoelectron Spectra of Benzonitrile and Its van der Waals Complexes with Argon. Adiabatic Ionization Potentials and Cation Vibrational Frequencies
    Mitsunori Araki, Shin-ichiro Sato, and Katsumi Kimura, The Journal of Physical Chemistry, 100, 10542-10546 (1996)
    doi:10.1021/jp960565a

  • Resist-polymer ablation by mid-infrared-free-electron laser
    Minoru Toriumi, Takayasu Kawasaki, Mitsunori Araki, Takayuki Imai, Koichi Tsukiyama, Proc. SPIE 10586, Advances in Patterning Materials and Processes XXXV, 1058613 (2018)
    doi: 10.1117/12.2297163
  • Developments of Optical Spectrometers as Approaches to Diffuse Interstellar Bands
    Mitsunori Araki, Satoshi Uchida, Norihisa Kondo, Yuki Matsushita, Kyoko Abe, Kunio Ito and Koichi Tsukiyama, , 9, 291-293 (2013)
    doi:10.1017/S1743921313016013
  • A spectral survey of molecules in the Orion nebula from 455-507 GHz: An inventory of prebiotic chemistry
    G. J. White, M. Araki, J. S. Greaves, M. Ohishi, Bioastronomy 2002: Life among the stars IAU symposia, 213, 169-172 (2004) ISBN:1-58381-171-0