東京大学 · 物理学・天文学
Murayama教授の研究室は、素粒子物理学と宇宙論の接点に焦点を当てた研究を推進しています。標準模型を超える新しい物理を、実験的・観測的証拠に基づいて最小限の自由度で構築する「最小限の新標準模型」の構築を柱とし、ダークエネルギー、ダークマター、ニュートリノ質量、ビッグバンにおける物質対称性の破れ、インフレーションなど、現代宇宙論の核心的問題を統合的に扱います。特に、右隠れニュートリノの超対称的超パートナー(右隠れ sneutrino)をインフレーションのインフレートンとして採用するモデルにより、観測された密度揺らぎと太陽ニュートリノ問題の解釈を自然に説明します。
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We construct the new Minimal Standard Model that incorporates the new discoveries of physics beyond the Minimal Standard Model (MSM): dark energy, non-baryonic dark matter, neutrino masses, as well as baryon asymmetry and cosmic inflation, adopting the principle of minimal particle content and the most general renormalizable Lagrangian. We base the model purely on empirical facts rather than aesthetics. We need only six new degrees of freedom beyond the MSM. It is free from excessive flavor-chan
We make explicit the statement that the minimal supersymmetric (SUSY) SU(5) model has been excluded by the SuperKamiokande search for the process $\stackrel{\ensuremath{\rightarrow}}{p}{K}^{+}\overline{\ensuremath{\nu}}.$ This exclusion is made by first placing limits on the colored Higgs triplet mass, by forcing the gauge couplings to unify. We also show that taking the superpartners of the first two generations to be very heavy in order to avoid flavor changing neutral currents, the so-called
We present a model of chaotic inflation driven by the superpartner of the right-handed neutrino (N${\mathrm{\ifmmode \tilde{}\else \~{}\fi{}}}_{\mathit{R}}$). This model gives the correct magnitude of the density perturbation observed by the Cosmic Background Explorer satellite with a right-handed neutrino mass \ensuremath{\simeq}${10}^{13}$ GeV, which is also preferred by the Mikheyev-Smirnov-Wolfenstein solution to the solar neutrino problem. The reheating process is the dacay of the coherentl
We propose a K\"ahler potential in supergravity which successfully accommodates chaotic inflation. This model can have a large gravitino mass without giving a large mass to squarks and sleptons, and thus is free from both the gravitino problem and entropy crisis. In this model baryogenesis takes places naturally, identifying the inflaton with a right-handed sneutrino with its mass M\ensuremath{\simeq}${10}^{13}$ GeV, which is consistent with the COBE data and the Mikheyev-Smirnov-Wolfenstein sol
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