ログイン
Language:

WEKO3

  • トップ
  • ランキング
To
lat lon distance
To

Field does not validate



インデックスリンク

インデックスツリー

メールアドレスを入力してください。

WEKO

One fine body…

WEKO

One fine body…

アイテム

  1. 原著論文

Ultrafast Subpicosecond Magnetization of a 2D Ferromagnet.

https://repo.qst.go.jp/records/2000948
https://repo.qst.go.jp/records/2000948
425c2cc9-969f-45ca-a1e6-73b2e0ce0b1d
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2025-06-05
タイトル
タイトル Ultrafast Subpicosecond Magnetization of a 2D Ferromagnet.
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Le Duc Anh

× Le Duc Anh

Le Duc Anh

Search repository
Masaki Kobayashi

× Masaki Kobayashi

Masaki Kobayashi

Search repository
Takahito Takeda

× Takahito Takeda

Takahito Takeda

Search repository
Kohsei Araki

× Kohsei Araki

Kohsei Araki

Search repository
Ryo Okano

× Ryo Okano

Ryo Okano

Search repository
Toshihide Sumi

× Toshihide Sumi

Toshihide Sumi

Search repository
Masafumi Horio

× Masafumi Horio

Masafumi Horio

Search repository
Kohei Yamamoto

× Kohei Yamamoto

Kohei Yamamoto

Search repository
Yuya Kubota

× Yuya Kubota

Yuya Kubota

Search repository
Shigeki Owada

× Shigeki Owada

Shigeki Owada

Search repository
Makina Yabashi

× Makina Yabashi

Makina Yabashi

Search repository
Iwao Matsuda

× Iwao Matsuda

Iwao Matsuda

Search repository
Masaaki Tanaka

× Masaaki Tanaka

Masaaki Tanaka

Search repository
抄録
内容記述タイプ Abstract
内容記述 Strong spin-charge interactions in several ferromagnets are expected to lead to subpicosecond (sub-ps) magnetization of the magnetic materials through control of the carrier characteristics via electrical means, which is essential for ultrafast spin-based electronic devices. Thus far, ultrafast control of magnetization has been realized by optically pumping a large number of carriers into the d or f orbitals of a ferromagnet; however, it is extremely challenging to implement by electrical gating. This work demonstrates a new method for sub-ps magnetization manipulation called wavefunction engineering, in which only the spatial distribution (wavefunction) of s (or p) electrons is controlled and no change is required in the total carrier density. Using?a ferromagnetic semiconductor (FMS) (In,Fe)As quantum well (QW), instant enhancement, as fast as 600?fs, of the magnetization is observed upon irradiating a femtosecond (fs) laser pulse. Theoretical?analysis shows that the instant enhancement of the magnetization is induced when the 2D electron wavefunctions (WFs) in the FMS QW are rapidly moved by a photo-Dember electric field formed by an asymmetric distribution of the photocarriers. Because this WF engineering method can be equivalently implemented by applying a gate electric field, these results open a new way to realize ultrafast magnetic storage and spin-based information processing in present electronic systems.
書誌情報 Advanced materials (Deerfield Beach, Fla.)

巻 35, 号 40, p. e2301347, 発行日 2023-06
出版者
出版者 Wiley-VCH
ISSN
収録物識別子タイプ ISSN
収録物識別子 1521-4095
PubMed番号
識別子タイプ PMID
関連識別子 37309900
DOI
識別子タイプ DOI
関連識別子 10.1002/adma.202301347
戻る
0
views
See details
Views

Versions

Ver.1 2025-08-15 03:06:16.045846
Show All versions

Share

Share
tweet

Cite as

Other

print

エクスポート

OAI-PMH
  • OAI-PMH JPCOAR 2.0
  • OAI-PMH JPCOAR 1.0
  • OAI-PMH DublinCore
  • OAI-PMH DDI
Other Formats
  • JSON
  • BIBTEX
  • ZIP

コミュニティ

確認

確認

確認


Powered by WEKO3


Powered by WEKO3