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T. Iwabuchi

Publications and source records attributed to T. Iwabuchi.

3 recordsLinked to original sources

Contact-induced doping in aluminum-contacted molybdenum disulfide

The interface between two-dimensional semiconductors and metal contacts is an important topic of research of nanoelectronic devices based on two-dimensional semiconducting materials such as molybdenum disulfide (MoS2). We report transport properties of thin MoS2 flakes in a field-effect transistor geometry with Ti/Au and Al contacts. In contrast to widely used Ti/Au contacts, the conductance of flakes with Al contacts exhibits a smaller gate-voltage dependence, which is consistent with a substantial electron doping effect of the Al contacts. The temperature dependence of two-terminal conductance for the Al contacts is also considerably smaller than for the Ti/Au contacts, in which thermionic emission and thermally assisted tunneling play a dominant role. This result is explained in terms of the assumption that the carrier injection mechanism at an Al contact is dominated by tunneling that is not thermally activated.

cond-mat.mes-hall

$L^p$-mapping properties for Schrödinger operators in open sets of $\mathbb R ^d$

Let $H_V=-Δ+V$ be a Schrödinger operator on an arbitrary open set $Ω$ of $\mathbb R^d$, where $d \geq 3$, and $Δ$ is the Dirichlet Laplacian and the potential $V$ belongs to the Kato class on $Ω$. The purpose of this paper is to show $L^p$-boundedness of an operator $φ(H_V)$ for any rapidly decreasing function $φ$ on $\mathbb R$. $φ(H_V)$ is defined by the spectral theorem. As a by-product, $L^p$-$L^q$-estimates for $φ(H_V)$ are also obtained.

math.FA

Letter of Intent for KASKA: High Accuracy Neutrino Oscillation Measurements with anti-nu_es from Kashiwazaki-Kariwa Nuclear Power Station

One of the current most-demanded experiments in neutrino physics is to measure the last mixing angle theta_13. KASKA is an experiment to detect new type of reactor neutrino oscillation and to measure sin^2 2theta_13 accurately using the world's most powerful nuclear reactor complex; Kashiwazaki-Kariwa nuclear power station. KASKA utilizes near and far detectors of identical structure at nearly optimized baselines and underground depths to cancel most of the systematics and reduce backgrounds. The expected sensitivity is sin^2 2theta_13~0.015, which is 10 times better sensitivity than the current upper limit measured by CHOOZ reactor experiment. Extension of KASKA project has potential to accurately measure other anti-nu_e oscillation parameters. Intense and precisely known neutrino flux measured by the KASKA-theta_13 phase can be used to pin down sin^2 2theta_12 at a baseline ~50km and to measure Dm^2_13 for the first time at a baseline ~5km. This Letter of Intent describes physics motivation, detector system and expected performance of the KASKA experiment.

hep-ex