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Device simulation of the light-addressable potentiometric sensor with a novel photoexcitation method for a higher spatial resolution

机译:具有较高空间分辨率的新型光透电流传感器的灯可寻址电位传感器的装置模拟

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A novel photoexcitation method for the light-addressable potentiometric sensor (LAPS) realized a higher spatial resolution of chemical imaging. In this method, a modulated light probe, which generates the alternating photocurrent signal, is surrounded by a ring of constant light, which suppresses the lateral diffusion of photocarriers by enhancing recombination. A device simulation verified that a higher spatial resolution could be obtained by adjusting the gap between the modulated and constant light. It was also found that a higher intensity and a longer wavelength of constant light was more effective. However, there exists a tradeoff between the spatial resolution and the amplitude of the photocurrent, and thus, the signal-to-noise ratio. A tilted incidence of constant light was applied, which could achieve even higher resolution with a smaller loss of photocurrent.
机译:用于光可寻址电位传感器(圈)的新型光筛分方法实现了较高的化学成像空间分辨率。在该方法中,产生交替光电流信号的调制光探针被恒定光环包围,其通过增强重组来抑制光燃料的横向扩散。设备模拟验证了通过调节调制和恒定光之间的间隙可以获得更高的空间分辨率。还发现,恒定光的更高强度和更长的波长更有效。然而,在空间分辨率和光电流的幅度之间存在折衷,因此是信噪比。施加恒定光的倾斜发射,这可以实现甚至具有较高的光电流损失的较高分辨率。

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