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首页> 外文期刊>Nanotechnology >Enhanced ultrafast optomagnetic effects in room-temperature ferromagnetic Pt nanoclusters embedded in silica by ion implantation
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Enhanced ultrafast optomagnetic effects in room-temperature ferromagnetic Pt nanoclusters embedded in silica by ion implantation

机译:通过离子植入植入二氧化硅的室温铁磁PT纳米能器中增强超快滤光效应

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Ferromagnetic-like behavior at room temperature (300 K) was observed in Pt particles embedded in ion-implanted silica matrices. Results in samples integrated by ultra-small photoluminescent Pt clusters (<2 nm) were compared with samples containing exclusively larger plasmonic Pt nanoparticles (>3 nm). The ferromagnetic behavior coexists simultaneously with a diamagnetic response. Enhanced diamagnetic response of one order of magnitude was observed compared to typical diamagnetism in pure silica, and it is increased with the mean diameter of the Pt particles. Besides, a larger sensitivity to an external field was observed in the ferromagnetic response of the nanostructures with a characteristic saturation at 20 kOe. This ferromagnetic behavior was only observed in the samples with nucleated Pt particles. The magnitude of the saturation magnetization shows up to a fivefold increase in the samples with smaller particle size and larger particle density. Saturation magnetization was observed between 3-15 x 10(-4)emu g(-1), with remanent magnetization of 0.2-0.6 x 10(-4)emu g(-1), measured at 300 K. Coercitive fields also decrease in samples with smaller size and particles density, with values of 114 and 300 Oe. At lower temperatures (5 K) the saturation magnetization increases, as it would be expected from a ferromagnetic state. Optomagnetic response was studied by inverse Faraday effects and induced photomagnetization with circular polarized picosecond pulsed light at 1064 nm wavelength. Results showed that samples with a stronger ferromagnetic response exhibit larger Faraday rotation up to 5.3 x 10(3)deg cm(-1)by light excitations with irradiances between 50 and 180 GW cm(-2). These findings have immediate applications in multifunctional solid-state magneto-optical devices such as optical isolators, high-data storage devices and ultrafast all-optical switching of magnetization.
机译:在嵌入在离子植入的二氧化硅基质中的Pt颗粒中观察到室温(300k)的铁磁性样行为。将通过含有专门较大的等离子体Pt纳米颗粒(> 3nm)的样品进行比较了通过超小的光致发光Pt簇(<2nm)整合的样品。铁磁行为以抗磁反应同时共存。与纯二氧化硅中的典型二极管相比,观察到一种级别的增强的抗磁响应,并且随着Pt颗粒的平均直径而增加。此外,在纳米结构的铁磁响应中观察到对外部场的较大敏感性,其具有20只Koe的特征饱和度。该铁磁性仅在含有核的Pt颗粒的样品中观察到。饱和磁化强度的幅度显示出具有较小粒径和较大颗粒密度的样品中的五倍增加。观察到饱和磁化在3-15×10(-4)EMU G(-1)之间,具有0.2-0.6×10(-4)emu g(-1)的剩余磁化,在300k中测量。矫顽田也降低在具有较小尺寸和颗粒密度的样品中,具有114和300 OE的值。在较低温度(5 k)下,饱和磁化强度增加,因为它将来自铁磁状态。通过反向法拉第效应研究了洋光磁响应,并在1064nm波长下用圆偏振的微尖脉冲脉冲诱导光电磁性。结果表明,具有较强的铁磁反应的样品通过在50至180gWcm(-2)之间的辐射术中,通过光激发较大至5.3×10(3)℃(-1)的较大的法拉第旋转。这些发现在多功能固态磁光装置中具有即时应用,例如光学隔离器,高数据存储装置和超速磁化的超快全光切换。

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