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論文

Current numbers of qubits and their uses

市川 翼*; 箱嶋 秀昭*; 乾 幸地*; 伊藤 康介*; 松田 亮*; 御手洗 光祐*; 宮本 幸一*; 水上 渉*; 水田 郁*; 森 俊夫*; et al.

Nature Reviews Physics (Internet), 6(6), p.345 - 347, 2024/06

 被引用回数:6 パーセンタイル:94.69(Physics, Applied)

Access to quantum computers has been democratized by the availability of cloud services from commercial providers, but the numbers of qubits users can exploit have remained modest, limited by noise and errors. What are these qubits used for and what can we expect next?

論文

Modeling changes in the second harmonic generation of ultrasonic waves having wavelengths beyond the length scale of conventional molecular dynamics

森 承宇*; 松田 那由多*; 沖田 泰良*; 愛知 正温*; 板倉 充洋; 鈴木 克幸*

Materialia, 21, p.101371_1 - 101371_6, 2022/03

The nonlinear ultrasonic (NLU) technique is a nondestructive method for detecting nanostructure in crystalline materials. In this study, a method was developed to quantify the changes in NLU signals associated with nanostructure using molecular dynamics (MD). A nonreflective boundary, which reduces the computational cost to the first power of the wavelength, was used to achieve this. This method is distinct from previous studies using a conventional MD, for which the computational cost is proportional to the square of the wavelength. The nonreflective boundary eliminates the influence of reflected waves at the detection position by setting a buffer region at the end of the simulation cell opposite from the wave source, and periodically resetting the displacements and velocities of all atoms in this region. This method allows the introduction of elastic waves with wavelengths longer than the cell size, and only an extension of time is required, according to the extension of the wavelength, without increasing the cell size. Hence, it is possible to extend the NLU wavelength by approximately four orders of magnitude, which approaches the wavelengths used for inspections and, thus, to use MD to simulate the changes in the NLU signals induced by nanostructure. The NLU signal values obtained by the two methods were in good agreement for a perfect Fe crystal and a Fe crystal containing 1% monovacancies. No significant frequency dependence of the acoustic nonlinearity parameter was found at 0 K. This method will contribute to the development of an inspection technique based on scientific principles.

口頭

分子動力学法を用いた非線形超音波成分のナノ構造依存性に関する定量化,3

森 承宇*; 松田 那由多*; 沖田 泰良*; 板倉 充洋

no journal, , 

非線形超音波応答(NLU)により、結晶性材料の材質劣化を検出する技術が様々な工学分野で用いられてきた。近年では、軽水炉圧力容器鋼の照射脆化を検出する技術への展開も図られているが、科学的根拠に基づいた検査技術構築のためには、非線形成分変化と微細組織変化の対応を原子挙動に基づいて解析することが求められる。特に分子動力学(MD)はその強力な手法であるが、計算の都合上導入可能な波長が実験で用いる波長より4桁以上短い。本研究では無反射境界を用いて計算速度を4000倍にまで高速化し、検査で使用される波長と同オーダーの波長でナノ構造に起因するNLU信号の変化を定量化することを目的とする。

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