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Diffraction of waves :a wave encounters a barrier that has an opening of dimensions similar to the wavelength, the part of the wave that passes through the opening will flare (spread) out—will diffract—into the region beyond the barrier. 注意描述:diffracted by slit;overlap and undergo interference。衍射指波通过细缝绕过障碍物传播的现象,干涉强调波与波. 4.11 光的干涉——牛顿环 4.11 光的干涉——牛顿环 要观察到光的干涉图像,如何获得相干光就成了重要的问题,利用普通光源获得相干光的方法是,把由光源上同一点发出的光设法分成两部分,然后再使这两部分叠起来。 也就是说P点所在的3号条纹,只有P点的圆弧部分看成了2(与2靠的更近),但实际上这一条线上的厚度本应该是3。所以本应是3但看到的是2,所以厚度相当于变小了,也就是向下凹。 学长说过一个好用的口诀:尖凹底凸 图乙向左的P点,相当于朝着图甲的尖端,就是凹。反之亦然。

然后注意观察图31-4中的衍射图像,第一个暗环的半径为19um左右,与图31-3点列图中的艾里斑半径明显不同。 这是因为,艾里斑的半径是以系统设置的入瞳直径为基准计算的,不包含后来设置的光阑面的影响;而点扩散函数PSF计算的结果是包含光阑面的影响的。 图5 3. 涡旋光的干涉条纹为什么是叉形的? 我们依然通过 I (P)=1+1+2cos\delta (P) 来进行理解。 第二节中说到,平面波和斜面波的干涉条纹。 如果我们把相位差和与之对应的干涉条纹,从一维扩展到二维,会是什么过程? 剪切干涉术原理 剪切干涉术依靠沿剪切方向上距离为剪切距离的两点、垂直高度差所产生的光程差产生干涉现象,所以最少需要两次互相正交的剪切干涉才会获得整个平面的梯度信息进行相位展开。 对于剪切干涉术虽然没有严格的定义,但是 依据剪切距离的不同仍然可以分为两种:一种为剪切距离.

干涉SAR(InSAR)技术: 干涉SAR技术通过两副天线同时对目标进行观测或一定时间间隔的两次观测,获得地面同一区域两次成像的复图像对(包括强度信息和相位信息)。 如果复图像对之间存在相干条件,就可以得到干涉图。

上机测试 最激动人心的时候到了,把他们借来的Nikon的白光干涉物镜拧下来,把我设计装配的物镜装到了他们的自研机台上了。 然后开机,嗯,图像出来了,清晰度没问题,然后找条纹,哎呀,找了半天没找到,什么情况,在恒温25℃的无尘车间,我满头大汗。 把 OCT 中使用的宽带光源光束聚焦到一个小点(约几微米),并在样品上进行x-y扫描,同时使用干涉测量收集深度信息,这样可以构建样品的完整 3D 图像。 2,傅里叶域OCT 傅里叶域OCT(FD-OCT)提供了一种更高效的方法来实现上述低相干干涉。 要使用MATLAB仿真出白光各干涉图样,可以使用光学干涉计算工具箱(Optics Toolbox)中的函数。 以下是一个示例代码,用于计算一个双缝干涉的白光干涉图样:

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