Sheridan, E., Barton, N. J., Birrittella, R., Nehra, V., Smith, Z., Tison, C., Smith, A. M., Dharanibalan, S., Bedi, V., Hucul, D., Kyle, B., Nadeau, C., Draper, M., Heinig, J., Faulkner, S., Scales, R., Brownell, A. M., Preble, S., Schneeloch, J., Schwab, S., Campbell, D., Sica, D., Ricci, P., Nikulin, V., Malowicki, J., Hall, J., Fanto, M., LaHaye, M. D., Wessing, L., Alsing, P. M., Soderberg, K. A., and Telesca, D. 2025, Telecommunications fiber-optic and free-space quantum local area networks at the Air Force Research Laboratory, arXiv:2508.01030, quant-ph, https://doi.org/10.48550/arXiv.2508.01030, 1 Aug 2025.
van Niekerk, M., Jahani, S., Bickford, J., Cho, P., Anderson, S., Leake, G., Coleman, D., Fanto, M. L., Tison, C. C., Howland, G. A., Jacob, Z., and Preble, S. F., 2020, "Demonstration of Two-Dimensional Extreme Skin Depth Engineering in CMOS Photonics Foundry," in Frontiers in Optics / Laser Science, B. Lee, C. Mazzali, K. Corwin, and R. Jason Jones, eds., OSA Technical Digest (Optical Society of America, 2020), paper FTh1C.5.
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