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首页> 外文期刊>Applied Physics >Spatially selective modification of optical and magneto-optical properties in Fe- and Au-doped glasses irradiated with femtosecond-laser
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Spatially selective modification of optical and magneto-optical properties in Fe- and Au-doped glasses irradiated with femtosecond-laser

机译:飞秒激光辐照的铁和金掺杂玻璃中光学和磁光特性的空间选择性修饰

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摘要

The optical property and the magneto-optical response were space-selectively modified in transparent Fe~(3+)-and Au~(3+)-doped glasses by using infrared femtosecond-(fs-) laser irradiation and subsequent annealing.This irradiation process induces the precipitation of not only magnetic spinel-type Fe-oxide nanoparticles but also Au nanoparticles inside the glasses,which shows localized surface plasmon resonance absorption at the wavelengths larger than 500 nm.As the annealing time and the temperature increases,the position of the LSPR peaks exhibits red shifts,which is due to the growth of Au nanoparticles.Faraday rotation angles as a function of wavelength were measured,and the difference spectra exhibit distinct positive peaks,indicating that the coupling between the LSPR due to the Au nanoparticles and the diamagnetism of the matrix glass is effective.To decrease the coupling with the diamagnetic glass,a two-step annealing process (at 450 ℃ for 90 min and at 550 ℃ for 30 min) was carried out after irradiation with fs-laser. The preliminary annealing at the lower temperature contributes to the precipitation of ferrimagnetic magnetite nanoparticles.Au nanoparticles were subsequently grown by annealing at 550 ℃.In this case,effective coupling between the LSPR and ferrimagnetic nanoparticles has significantly suppressed the intensity of the positive peak in the Faraday spectra compared with the single annealing process.
机译:通过使用红外飞秒(fs-)激光辐照和随后的退火处理,在掺杂Fe〜(3+)和Au〜(3+)的透明玻璃中对光学性能和磁光响应进行了空间选择性修饰。此过程不仅会导致玻璃中尖晶石型Fe-氧化物磁性纳米颗粒的沉淀,还会导致Au纳米颗粒的沉淀,这表明在大于500 nm的波长下局部表面等离子体共振吸收。随着退火时间和温度的升高,玻璃的位置由于金纳米粒子的生长,LSPR峰呈现出红移。测量法拉第旋转角随波长的变化,并且差异光谱呈现出明显的正峰,表明金纳米粒子与LSPR之间的耦合。为了降低与抗磁性玻璃的耦合,进行了两步退火工艺(在450℃加热90分钟,在550℃加热30分钟)。用fs激光照射后照射出。较低温度下的初步退火有助于亚铁磁性磁铁矿纳米颗粒的沉淀。随后通过在550℃退火使Au纳米颗粒生长。在这种情况下,LSPR与亚铁磁性纳米颗粒之间的有效耦合显着抑制了正磁性峰的强度。法拉第光谱与单退火工艺相比。

著录项

  • 来源
    《Applied Physics》 |2013年第4期|765-769|共5页
  • 作者单位

    Yokohama National University,79-5 Tokiwadai,Hodogaya-ku,Yokohama-shi,Kanagawa 240-8501, Japan;

    Yokohama National University,79-5 Tokiwadai,Hodogaya-ku,Yokohama-shi,Kanagawa 240-8501, Japan;

    RIKEN-Advanced Research Institute,2-1Hirosawa,Wako-shi,Saitama 351-0198,Japan;

    RIKEN-Advanced Research Institute,2-1Hirosawa,Wako-shi,Saitama 351-0198,Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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