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Radio Frequency Carbon Nanotube Thin-Film Bolometer

机译:射频碳纳米管薄膜测厚仪

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摘要

A radio frequency bolometer was realized using a thermistor fabricated from a carbon nanotube thin-film deposited on a sapphire substrate. Power detection performance was characterized at room and liquid nitrogen temperatures. With the thermistor held at a temperature of 15 °C, the bolometer's sensitivity of 915-MHz test signals was found to be 0.36 mV/mW, and power levels as low as -45 dBm could be detected with a 20-s integration time constant. The sensitivity increased to 2.3 mV/mW when the thermistor was cooled to -193 °C. Experiments over the temperature range of 15 °C-240 °C indicate that internanotube mechanisms dominate power detection at temperatures below a value of approximately 200 °C and that intrananotube mechanisms (primarily Joule-heating) dominate at higher temperatures.
机译:使用由沉积在蓝宝石衬底上的碳纳米管薄膜制成的热敏电阻来实现射频辐射热测量计。在室温和液氮温度下表征功率检测性能。将热敏电阻保持在15°C的温度下,辐射热计的915 MHz测试信号灵敏度为0.36 mV / mW,积分时间为20 s时可以检测到低至-45 dBm的功率水平。当热敏电阻冷却到-193°C时,灵敏度增加到2.3 mV / mW。在15°C-240°C的温度范围内进行的实验表明,在低于约200°C的温度下,内部纳米管机制占主导地位,而在较高温度下,内部纳米管机制占主导地位(主要是焦耳加热)。

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