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Satoshi Fujii

Publications and source records attributed to Satoshi Fujii.

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On automorphisms of some semidirect product groups and ranks of Iwasawa modules

Let $p$ be an odd prime number and $k$ an imaginary quadratic field in which $p$ does not split. Based on their heuristic, Kundu and Washington posed a question which asks whether $\lambda$- and $\mu$-invariant of the anti-cyclotomic ${\Bbb Z}_p$-extension $k_{\infty}^a$ of $k$ are always trivial. Also, if $k_{\infty}^a/k$ is totally ramified, for $n\geq 1$, they showed that the $p$-part of the ideal class group of the $n$th layer of the anti-cyclotomic ${\Bbb Z}_p$-extension of $k$ is not cyclic. In this article, inspired by their paper, we study anti-cyclotomic like ${\Bbb Z}_p$-extensions, extending both the above question and Kundu-Washington's result. We show that the values of $\lambda$ of certain anti-cyclotomic like ${\Bbb Z}_p$-extensions are always even. We also show the $p$-part of the ideal class groups of certain anti-cyclotomic like ${\Bbb Z}_p$-extensions of CM-fields are always not cyclic.

math.NT

Low-Temperature Characteristics of an AlN/Diamond Surface Acoustic Wave Resonator

Phonons confined in mechanical resonators can be coupled to a variety of quantum systems and are expected to be applied to hybrid quantum systems. Diamond surface acoustic wave (SAW) devices are capable of high efficiency in phonon interaction with color centers in diamond. The temperature dependence of the quality factor is crucial for inferring the governing mechanism of coupling efficiency between phonons and color centers in diamond. In this paper, we report on the temperature dependence of the quality factor of an AlN/diamond SAW device from room temperature to 5 K. The temperature dependence of the quality factor and resonant frequency suggests that the mechanism of SAW dissipation in the AlN/diamond SAW resonator at 5 GHz is the phonon-phonon scattering in the Akheiser region, and that further cooling can be expected to improve the quality factor. This result provides a crucial guideline for the future design of AlN/diamond SAW devices.

physics.app-ph