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LATERAL RESOLUTION OF LIGHT-ADDRESSABLE POTENTIOMETRIC SENSORS - AN EXPERIMENTAL AND THEORETICAL INVESTIGATION

机译:光寻址电位传感器的横向分辨率-实验和理论研究

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摘要

The surface potential of semiconductor devices in contact with electrolyte solutions is an important part of signal transduction for a variety of bioanalytical devices. Here we have investigated the lateral resolution at which the surface potential may be measured with a semiconductor-based device, a light-addressable potentiometric sensor (LAPS). We have first established an experimental setup where a permanent charge pattern is generated in the oxide-nitride interface of an n-doped silicon wafer by UV irradiation. Using a laser beam to interrogate the LAPS, the charge pattern can be detected by measuring the local photocurrent ata resolution of better than 100 mu m. A theoretical model based on the diffusion and recombination of photogenerated minority charge carriers has been developed and solved analytically; it is consistent with experiment. For Beer-Lambert law absorption of a sufficiently narrow beam of interrogating light, according to the theory the lateral resolution depends on the relative sizes of the penetration depth of the light, d, and the recombination-diffusion length of the carriers, L. When d much less than L,the resolution is (2Ld)(1/2); when L much greater than d, it is (2L(2))(1/2). (C) 1997 Elsevier Science S.A. [References: 32]
机译:与电解质溶液接触的半导体器件的表面电势是各种生物分析设备信号转导的重要部分。在这里,我们研究了横向分辨率,在该横向分辨率下,可以使用基于半导体的设备(光寻址电位传感器(LAPS))测量表面电势。我们首先建立了一个实验装置,其中通过紫外线辐照在n掺杂硅片的氧化物-氮化物界面中产生永久电荷图案。使用激光束询问LAPS,可以通过测量优于100微米的局部光电流ata分辨率来检测电荷模式。建立并分析了基于光生少数电荷载流子扩散和复合的理论模型。这与实验一致。对于比尔-兰伯特定律,吸收足够窄的询问光束,根据该理论,横向分辨率取决于光的穿透深度d的相对大小以及载体的复合扩散长度L。 d远小于L,分辨率为(2Ld)(1/2);当L远大于d时,则为(2L(2))(1/2)。 (C)1997 Elsevier Science S.A. [参考:32]

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