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首页> 外文期刊>Optics Letters >Three-dimensional motion detection of a 20-nm gold nanoparticle using twilight-field digital holography with coherence regulation
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Three-dimensional motion detection of a 20-nm gold nanoparticle using twilight-field digital holography with coherence regulation

机译:使用相干调节的暮场数字全息技术对20 nm金纳米粒子进行三维运动检测

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摘要

In the twilight-field method for obtaining interference fringes with high contrast in in-line digital holography, only the intensity of the reference light is regulated to be close to the intensity of the object light, which is the ultra-weak scattered light from a nanoparticle, by using a low-frequency attenuation filter. Coherence of the light also strongly affects the contrast of the interference fringes. High coherence causes a lot of undesired coherent noise, which masks the fringes derived from the nanoparticles. Too-low coherence results in fringes with low contrast and a correspondingly low signal-to-noise ratio. Consequently, proper regulation of the coherence of the light source, in this study the spectral width, improves the minimum detectable size in holographic three-dimensional position measurement of nanoparticles. By using these methods, we were able to measure the position of a gold nanoparticle with a minimum diameter of 20 nm.
机译:在用于在线数字全息术中获得高对比度干涉条纹的暮光场方法中,仅将参考光的强度调整为接近目标光的强度,该目标光是来自光源的超弱散射光。纳米粒子,通过使用低频衰减滤波器。光的相干性也强烈影响干涉条纹的对比度。高相干性会导致大量不希望有的相干噪声,从而掩盖了源自纳米粒子的条纹。太低的相干性会导致条纹具有较低的对比度和相应较低的信噪比。因此,在本研究中,适当调节光源的相干性(在本研究中是光谱宽度)可以改善纳米颗粒全息三维位置测量中的最小可检测尺寸。通过使用这些方法,我们能够测量最小直径为20 nm的金纳米颗粒的位置。

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