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Terahertz phase imaging and biomedical applications

机译:太赫兹相成像和生物医学应用

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摘要

Terahertz frequency (THz) radiation lies in between the microwave and infrared ranges. While it is strongly absorbed by water, it is nonionizing and has low possibility of causing tissue damage as it involves low energy photons. Recent technological progress in developing THz instrumentation, means that commercial THz systems are being produced with improving performance which are easier to operate and more reliable. THz phase imaging, an advanced imaging technology which combines the benefits of THz and commonly used phase imaging techniques, has recently received significant attention. In this paper, the current state of such imaging systems is reviewed. This review deals with both pulsed and continuous-wave (CW) imaging systems. Pulsed THz phase imaging is a coherent measurement, which includes terahertz pulsed imaging (TPI) based on femtosecond laser and holographic imaging in the time domain, both allow phase and amplitude information of the electric field to be recorded. CW THz phase imaging is mainly based on digital holography, interferometry and ptychography. These systems can obtain the complex amplitude by capturing diffraction patterns and applying numerical reconstruction techniques. Biomedical applications of such THz systems are highlighted.
机译:太赫兹频率(THz)辐射位于微波和红外线之间。虽然它被水强烈吸收,但它是非极化的,并且可能导致组织损伤的可能性很低,因为它涉及低能量光子。最近开发THZ仪器的技术进步意味着正在通过提高性能来生产商业THZ系统,这更容易操作,更可靠。 THz相位成像,一种结合THZ和常用相片成像技术的好处的先进成像技术,最近受到了重大关注。在本文中,综述了这种成像系统的当前状态。该综述处理脉冲和连续波(CW)成像系统。脉冲THz相位成像是一种相干测量,其包括基于飞秒激光和时域的全息成像的太赫兹脉冲成像(TPI),两者都允许记录电场的相位和幅度信息。 CW THz相位成像主要基于数字全息,干涉测量和PTYCHOGAGE。这些系统可以通过捕获衍射图案和应用数值重建技术来获得复幅幅度。突出显示此类THZ系统的生物医学应用。

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