杨氏干涉实验是显示光的波动特质的著名实验之一。这是当今几个量子光学实验的基础。 我们通过使用可调节狭缝宽度和狭缝距离的双狭缝,在VirtualLab Fusion中重现了这个著名的实验。使用一个单点光源,我们检查了缝隙宽度和缝隙距离对干涉的影响;在扩展光源的情况下,我们观察到干涉对比度如何随光源的横向扩展而变化。





离轴点光源的结果(横向位移X方向 60 µm)

建模任务–扩展光源






- White-Light Michelson Interferometer
- Mach-Zehnder Interferometer