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Direct measurement of bull's-eye nanoantenna metal loss

机译:直接测量靶心纳米天线的金属损耗

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摘要

The loss in optical antennas can affect their performance for their practical use in many branches of science such as biological and solar cell applications. However the big question is that how much loss is due to the joule heating in the metals. This would affect the efficiency of solar cells and is very important for single photon detection and also for some applications where high heat generation in nanoantennas is desirable, for example, payload release for cancer treatment. There are few groups who have done temperature measurements by methods such as Raman spectroscopy or fluorescence polarization anisotropy. The latter method, which is more reliable than Raman spectroscopy, requires the deposition of fluorescent molecules on the antenna surface. The molecules and the polarization of radiation rotate depending upon the surface temperature. The reported temperature measurement accuracy in this method is about 0.1℃. Here we present a method based on thermo-reflectance that allows better temperature accuracy as well as spatial resolution of 500 nm. Moreover, this method does not require the addition of new materials to the nanoantenna. We present the measured heat dissipation from bull's-eye nanoantennas and compare them with 3D simulation results.
机译:光学天线的损耗会影响其在许多科学分支(如生物和太阳能电池应用)中的实际使用性能。但是,最大的问题是,由于金属中的焦耳热,会有多少损失。这将影响太阳能电池的效率,并且对于单光子检测以及对于某些需要在纳米天线中产生大量热量的应用(例如,用于癌症治疗的有效载荷释放)非常重要。很少有人通过拉曼光谱或荧光偏振各向异性等方法进行温度测量。后一种方法比拉曼光谱法更可靠,需要在天线表面沉积荧光分子。分子和辐射的极化根据表面温度旋转。该方法报告的温度测量精度约为0.1℃。在这里,我们介绍一种基于热反射的方法,该方法可以实现更好的温度精度以及500 nm的空间分辨率。而且,该方法不需要向纳米天线添加新材料。我们介绍了从靶心纳米天线测得的散热量,并将其与3D仿真结果进行了比较。

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  • 会议地点 San Diego CA(US)
  • 作者单位

    Bio-Inspired Sensors and Optoelectronics Laboratory (BISOL), EECS, Northwestern University, 2145 Sheridan Rd., Evanston, Illinois, USA;

    Bio-Inspired Sensors and Optoelectronics Laboratory (BISOL), EECS, Northwestern University, 2145 Sheridan Rd., Evanston, Illinois, USA;

    Bio-Inspired Sensors and Optoelectronics Laboratory (BISOL), EECS, Northwestern University, 2145 Sheridan Rd., Evanston, Illinois, USA;

    Bio-Inspired Sensors and Optoelectronics Laboratory (BISOL), EECS, Northwestern University, 2145 Sheridan Rd., Evanston, Illinois, USA;

    Bio-Inspired Sensors and Optoelectronics Laboratory (BISOL), EECS, Northwestern University, 2145 Sheridan Rd., Evanston, Illinois, USA;

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