首页> 外文会议> >Nanoscale thermoreflectance with 10mK temperature resolution using stochastic resonance
【24h】

Nanoscale thermoreflectance with 10mK temperature resolution using stochastic resonance

机译:利用随机共振的10mK温度分辨率的纳米级热反射

获取原文

摘要

We present 2D temperature measurements with 250nm spatial and 10mK temperature resolution using thermoreflectance microscopy. We measure the temperature-induced reflectivity change with an accuracy better than /spl Delta/R/R=2/spl middot/10/sup -6/ using a 12bit CCD, which has a quantization limitation of /spl Delta/R/R=2.5/spl middot/10/sup -4/. The dynamic range is thus expanded from 72dB to 114dB, equivalent to more than 18 effective bits. We quantitatively explain this dramatic improvement using the concept of stochastic resonance. In addition, we optimize the thermoreflectance calibration coefficient K/spl equiv/R/sup -1//spl middot/ R/T by matching the illumination wavelength to a combination of the thermoreflectance coefficient spectrum R/T and the reflectivity spectrum R. For gold illuminated with a 467nm LED, we obtain the extraordinarily large value /spl kappa/ =3.3/spl middot/10/sup -4/ K/sup -1/. This calibration coefficient yields a temperature resolution of better than 10mK.
机译:我们提出了使用热反射显微镜在250nm空间和10mK温度分辨率下进行2D温度测量的方法。我们使用12位CCD来测量温度引起的反射率变化,其精度优于/ spl Delta / R / R = 2 / spl middot / 10 / sup -6 /,其量化限制为/ spl Delta / R / R = 2.5 / spl middot / 10 / sup -4 /。动态范围因此从72dB扩展到114dB,相当于18个以上的有效位。我们使用随机共振的概念定量地解释了这种巨大的进步。此外,我们通过将照明波长与热反射系数光谱R / T和反射率光谱R的组合进行匹配,来优化热反射校准系数K / spl equiv / R / sup -1 // spl middot / R / T。用467nm LED照明的金,我们获得了非常大的值/ spl kappa / = 3.3 / spl middot / 10 / sup -4 / K / sup -1 /。该校准系数产生的温度分辨率优于10mK。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号