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Scanning Probe Charge Reading of Ferroelectric Polarization with Nanoscale Resolution

机译:纳米级分辨率扫描铁电偏振探头

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A scanning probe charge reading technique (SPCRT) that uses a conductive probe tip electrically connected with a charge amplifier device is applied for the detection of electrical charges associated with alternating polarization domains (bits) in a ferroelectric media. High-speed SPCRT is demonstrated by coupling an array of bits (0.8 um wavelength) with a scanning speed of 5.5 mm/s to modulate the bit signal frequency into the 6.9 kHz data rate range. A variant mode of SPCRT implemented with lock-in technique is also demonstrated to read bit charge signals of 80 nm wide polarizations with 10 nm scale spatial resolution.
机译:使用与电荷放大器装置电连接电连接的导电探针尖端的扫描探针电荷读取技术(SPCRT)用于检测与铁电介质中的交替偏振域(比特)相关联的电荷。通过耦合5.5mm / s的扫描速度,通过耦合一系列比特(0.8um波长)来证明高速Spcrt来调制位信号频率进入6.9kHz数据速率范围。还通过锁定技术实现的SPCRT的变型模式,以读取具有10nm级空间分辨率的80nm宽偏振的比特充电信号。

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