Portable Interferometric Modules

Bold-text authors are OMNI group members.

  • N. T. Shaked, “Quantitative phase microscopy of biological samples using a portable interferometer,” Optics Letters, Vol. 37, No. 11, 2016-2019, 2012 [PDF] [Link].
  • P. Girshovitz and N. T. Shaked, “Compact and portable low-coherence interferometer with off-axis geometry for quantitative phase microscopy and nanoscopy,” Optics Express, Vol. 21, Issue 5, pp. 5701-5714, 2013 [PDF] [Video] [Link].
  • P. Girshovitz and N. T. Shaked, “Doubling the field of view in off-axis low-coherence interferometric imaging,” Nature – Light: Science and Applications (Nature LSA[IF 17.782], Vol. 3, e151, pp. 1-9, 2014 [PDFVideo 1Video 2] [Link].
  • I. Frenklach, P. Girshovitz, and N. T. Shaked, “Off-axis interferometric phase microscopy with tripled imaging area,” Optics Letters , Vol. 39, No. 6, pp. 1525-1528, 2014 [PDF] [Link].
  • N. A. Turko and N. T. Shaked, “Simultaneous two-wavelength phase unwrapping using external module for multiplexing off-axis holography using external module for multiplexing off-axis holography,” Optics Letters, Vol. 42, Issue 1, pp. 73-76, 2017 [PDF] [Link].
  • N. A. Turko, P. Jacob Eravuchira, I. Barnea, and N. T. Shaked, “Simultaneous three-wavelength unwrapping using external digital holographic multiplexing module,” Optics Letters, Vol. 43, Issue 9, pp. 1943-1946, 2018 [PDF] [Link].
  • D. Roitshtain, N. Turko, B. Javidi, and N. T. Shaked, “Flipping interferometry and its application for quantitative phase microscopy in a micro-channel,” Optics Letters, Vol. 41, Issue 10, pp. 2354-2357, 2016 [PDF[Link] .
  • A. Nativ and N. T. Shaked, “Compact interferometric module for full-field interferometric phase microscopy with low spatial coherence illumination,” Optics Letters, Vol. 42, Issue 8, pp. 1492-1495, 2017 [PDF] [Link].
  • A. Nativ, H. Feldman, and N. T. Shaked, “Wafer defect detection by polarization insensitive external differential interference contrast module,” Applied Optics, Vol. 57, No. 13, pp. 3534-3538, 2018 [PDF] [Link].
  • Y. Nygate, G. Singh, N. A. Turko, and N. T. Shaked, “Simultaneous off-axis multiplexed holography and regular fluorescence microscopy of biological cells,” Optics Letters, Vol. 43, No. 1, pp. 2587-2590, 2018 [PDFVideo 1] [Link].
  • N. Rotman-Nativ, N. A. Turko, and N. T. Shaked, “Flipping interferometry with doubled imaging area,” Optics Letters, Vol. 43, Issue 22, pp. 5542-5545, 2018 [PDF, Video 1Video 2Video 3].
  • R. GuoI. Barnea and N. T. Shaked, “Low-coherence shearing interferometry with constant off-axis angle,” Frontiers in Physics, Vol. 8, 611679, 2021 [PDF[Link].
  • R. Guo, S. K. Mirsky, I. Barnea, M. Dudaie, and N. T. Shaked, “Quantitative phase imaging by wide-field interferometry with variable shearing distance uncoupled from the off-axis angle,” Optics Express, Vol. 28, No. 4, pp. 5617-5628, 2020 [Link].
  • L. Karako, R. Guo, I. Barnea, and N. T. Shaked, “Flipping interferometric module for simultaneous dual-wavelength unwrapping of quantitative phase maps of biological cells,” Frontiers in Physics, Vol. 9, 667023, 2021 [PDF] [Link].
  • M. Dudaie, S. Shenhar, and N. T. Shaked, “Polarization-independent differential interference contrast and off-axis holography combined module,” Applied Optics, Vol. 60, No. 34, pp. 10825-10829, 2021 [Link].

 


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R. Guo, S. K. Mirsky, I. Barnea, M. Dudaie, and N. T. Shaked, “Quantitative phase imaging by wide-field interferometry with variable shearing distance uncoupled from the off-axis angle,” Optics Express, Vol. 28, No. 4, pp. 5617-5628, 2020 [Link].