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Spatially incoherent off-axis Fourier holography without using spatial light modulator (SLM). | LitMetric

AI Article Synopsis

  • The paper introduces a new dual path Fourier holographic system called the Incoherent Off-axis Fourier Holography (IOFH), which is simpler and more cost-effective than existing systems because it doesn't require a spatial light modulator (SLM).
  • It boasts a higher light throughput since it avoids the light intensity loss that occurs in traditional systems like Fourier Incoherent Single Channel Holography (FISCH) due to splitting beams and using analyzers.
  • The IOFH system can effectively work with both on-axis and half-plane samples, achieved by tilting a mirror, which expands its versatility in holographic imaging.

Article Abstract

We present a spatially incoherent dual path Fourier holographic system. Conceptually it is similar to Fourier incoherent single channel holography (FISCH). Although our incoherent off-axis Fourier holographic (IOFH) system does not have the robustness of a single channel system, it has three advantages over FISCH, with two being quite obvious from setup. First, no SLM is required, thus making the system simple and cost-effective. Second, it is capable of high light throughput because in FISCH, the use of SLM reduces light intensity in half by splitting one beam into two; furthermore, an analyzer is required to create interference which also reduces light intensity. The third advantage, which makes this IOFH system applicable even for on-axis samples (as opposed to samples in a half plane as is necessary for FISCH), is achieved by tilting one mirror. Here we demonstrate our system with a sample in half plane as in FISCH for different axial positions, and then by placing the object on an optical axis and tilting one mirror. The reconstructed images demonstrate holographic capabilities of our IOFH system for both on-axis and half plane sample locations.

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Source
http://dx.doi.org/10.1364/OE.24.022097DOI Listing

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