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    • 1. 发明授权
    • Systems and methods for near-field heterodyne spectroscopy
    • 近场外差光谱的系统和方法
    • US07760364B1
    • 2010-07-20
    • US12256324
    • 2008-10-22
    • Guorong V. ZhuangJohn FieldenChristopher F. Bevis
    • Guorong V. ZhuangJohn FieldenChristopher F. Bevis
    • G01B9/02
    • G01N21/1717G01N2021/1725G01Q60/22
    • In a near-field heterodyne spectroscopy system, a near-field generation device receives the output of a pump beam source and is also made to vibrate or move at a frequency f to generate a modulated near-field beam having a near-field component. The outputs of the pump beam source and a probe beam source (optional) as well as the modulated near-field beam are directed to the same point on a sample. At least one of the outputs of the pump beam source and probe beam source is modulated at a frequency Ω. Thus, the reflected beam that results from the interaction with the region illuminated by the modulated near-field beam is modulated at frequencies Ω+f and Ω−f. Because the excitation is near-field, the electric field in the sample is evanescent and ensures a shallow probing depth as well as smaller lateral dimensions beyond diffraction limit.
    • 在近场外差光谱系统中,近场产生装置接收泵浦光束源的输出,并且还使其以频率f振动或移动以产生具有近场分量的调制近场光束。 泵浦光束源和探测光束源(可选)以及调制的近场光束的输出被引导到样品上的相同点。 泵浦光源和探测光束源的输出中的至少一个以频率&OHgr进行调制。 因此,由与被调制的近场光束照射的区域的相互作用产生的反射光束被调制在频率ωgr+ f和&omegr; -f。 因为激发是近场的,所以样品中的电场是消逝的,并且确保了较深的探测深度以及超过衍射极限的较小的横向尺寸。