Publications
“折り返し点を通過した冷反水素研究 : カスプトラップによる反水素の生成と磁気瓶への閉じ込め”, 日本物理學會誌, vol. 66, pp. 594-602, 2011.
, “カスプトラップを用いた反水素研究”, 陽電子科学, vol. 4, pp. 49-59, 2015.
, “Upgrade of ASACUSA’s antihydrogen detector”, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, vol. 1045, p. 167568, 2023.
, “Transport beam line for ultraslow monoenergetic antiprotons”, Review of Scientific InstrumentsRev. Sci. Instrum., vol. 74, pp. 3305 - 3311, 2003.
, “Towards the production of anti-hydrogen beams”, AIP Conference Proceedings, vol. 1521, pp. 134-143, 2013.
, “Towards measuring the ground state hyperfine splitting of antihydrogen – a progress report”, Hyperfine Interactions, vol. 237, p. 103, 2016.
, “Towards a spin polarized antihydrogen beam”, Hyperfine Interactions, pp. 1-10, 2014.
, “Towards a precise measurement of the antihydrogen ground state hyperfine splitting in a beam: the case of in-flight radiative decays”, Journal of Physics B: Atomic, Molecular and Optical Physics, vol. 48, p. 184001, 2015.
, “Target Structure Induced Suppression of the Ionization Cross Section for Very Low Energy Antiproton-Hydrogen Collisions”, Physical Review LettersPhys. Rev. Lett., vol. 105, p. 213201 -, 2010.
, “Synthesis of Cold Antihydrogen in a Cusp Trap”, Physical Review LettersPhys. Rev. Lett., vol. 105, p. 243401 -, 2010.
, “Synthesis of antihydrogen atoms in a CUSP trap”, Hyperfine Interactions, vol. 209, pp. 35-41, 2012.
, “Spectroscopy apparatus for the measurement of the hyperfine structure of antihydrogen”, Hyperfine Interactions, pp. 1-6, 2014.
, “A source of antihydrogen for in-flight hyperfine spectroscopy”, Nat Commun, vol. 5, 2014.
, “Scaling behavior of the ground-state antihydrogen yield as a function of positron density and temperature from classical-trajectory Monte Carlo simulations”, Phys. Rev. A, vol. 90, p. 032704, 2014.
, “Reducing the background temperature for cyclotron cooling in a cryogenic Penning–Malmberg trap”, Physics of Plasmas, vol. 29, p. 083303, 2022.
, “Recent Developments from ASACUSA on Antihydrogen Detection”, EPJ Web of Conferences, vol. 181, p. 01003, 2018.
, “Radial compression of protons and H_{3}^{+} ions in a multiring trap for the productionof ultralow energy antiproton beams”, Physical Review EPhys. Rev. E, vol. 70, p. 026501 -, 2004.
, “Radial compression of antiproton cloud for production of ultraslow antiproton beams”, AIP Conference Proceedings, vol. 1114, pp. 157-162, 2009.
, “Radial Compression of an Antiproton Cloud for Production of Intense Antiproton Beams”, Physical Review LettersPhys. Rev. Lett., vol. 100, p. 203402 -, 2008.
, “Radial compression of a non-neutral plasma in a cusp trap for antihydrogen synthesis”, Physical Review APhys. Rev. A, vol. 77, p. 051403 -, 2008.
, “Progress of Antihydrogen Beam Production Using a Double Cusp Trap”, JPS Conf. Proc., vol. 18, p. 011007, 2017.
, “Production of ultra-slow antiproton beams”, AIP Conference Proceedings, vol. 793, pp. 293-306, 2005.
, “Production of ultra slow antiprotons, its application to atomic collisions and atomic spectroscopy – ASACUSA project”, vol. 154, pp. 174 - 184, 1999.
, “A possible new scheme to synthesize antihydrogen and to prepare a polarised antihydrogen beam”, EPL (Europhysics Letters), vol. 63, p. 207, 2003.
, “Positron accumulation and manipulation for antihydrogen synthesis”, Journal of Physics: Conference Series, vol. 225, p. 012018, 2010.
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