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Optimizing image quality for holographic near-eye displays with Michelson Holography

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5. L. Shi, F.-C. Huang, W. Lopes, W. Matusik, and D. Luebke, ACM Trans. Graph. 36, 236 (2017). [CrossRef] 6. P. Chakravarthula, Y. Peng, J. Kollin, H. Fuchs, and F. Heide, ACM Trans. Graph. 38, 1 (2019). [CrossRef] 7. J.-H. Park and M. Askari, Opt. Express 27, 2562 (2019). [CrossRef] 8. N. Padmanaban, Y. Peng, and G. Wetzstein, ACM Trans. Graph. 38, 1 (2019). [CrossRef] 9. B. Lee, D. Yoo, J. Jeong, S. Lee, D. Lee, and B. Lee, Opt. Lett. 45, 2148 (2020). [CrossRef] 10. G. Kuo, L. Waller, R. Ng, and A. Maimone, ACM Trans. Graph. 39, 66 (2020). [CrossRef] 11. D. E. Smalley, Q. Smithwick, V. Bove, J. Barabas, and S. Jolly, Nature 498, 313 (2013). [CrossRef] We introduce Michelson holography (MH), a holographic display technology that optimizes image quality for emerging holographic near-eye displays. Using two spatial light modulators (SLMs), MH is capable of leveraging destructive interference to optically cancel out undiffracted light corrupting the observed image. We calibrate this syst

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