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Jun-ichi Takahashi

Publications and source records attributed to Jun-ichi Takahashi.

3 recordsLinked to original sources

Carrier Accumulation in Organic Heterojunctions Controlled by Polarization

We present a heterojunction theory of ultrathin organic multi-layered devices, which is the revision of our previous work. Their characteristic feature is the generation of conductive space charge region in the insulating neutral dielectric region under the bias voltage application, while the insulating space charge region is generated in the conductive neutral region in the case of semiconductors. We propose the concept of quasiconductor to describe these features. From the theory, the capacitor equation of mobile carriers is given, which is an equivalent equation of the Mott-Schottky equation in semiconductor physics. Because the organics are dielectrics, the dynamics are controlled cleverly by polarization. The theory gives a relation among the applied voltage, carrier accumulation, mobility, and carrier density, which enables the in-situ simultaneous evaluation of mobility and the carrier density of ultrathin organic multi-layered devices. The concept of quiasiconductor is a missing link between organic electronics and the semiconductor physics.

physics.app-ph↗

Tanpopo cosmic dust collector: Silica aerogel production and bacterial DNA contamination analysis

Hydrophobic silica aerogels with ultra-low densities have been designed and developed as cosmic dust capture media for the Tanpopo mission which is proposed to be carried out on the International Space Station. Glass particles as a simulated cosmic dust with 30 μm in diameter and 2.4 g/cm^3 in density were successfully captured by the novel aerogel at a velocity of 6 km/s. Background levels of contaminated DNA in the ultra-low density aerogel were lower than the detection limit of a polymerase chain reaction assay. These results show that the manufactured aerogel has good performance as a cosmic dust collector and sufficient quality in respect of DNA contamination. The aerogel is feasible for the biological analyses of captured cosmic dust particles in the astrobiological studies.

physics.ins-det↗

How to Measure the Quantum State of Collective Atomic Spin Excitation

The spin state of an atomic ensemble can be viewed as two bosonic modes, i.e., a quantum signal mode and a $c$-numbered ``local oscillator'' mode when large numbers of spin-1/2 atoms are spin-polarized along a certain axis and collectively manipulated within the vicinity of the axis. We present a concrete procedure which determines the spin-excitation-number distribution, i.e., the diagonal elements of the density matrix in the Dicke basis for the collective spin state. By seeing the collective spin state as a statistical mixture of the inherently-entangled Dicke states, the physical picture of its multi-particle entanglement is made clear.

quant-ph↗