中文

Field-Widened Multimode Interferometer with Long Time-Bin Delay Using a Multi-Pass Herriott Cell

量子物理 2026-08-13 v1 光学

摘要

Interference of optical signals in free-space channels requires optical receivers to support many spatial modes due to atmospheric turbulence, typically necessitating adaptive optics systems. Field-widened interferometers offer a passive alternative, making them particularly attractive for time-bin encoded signals with delays on the order of one nanosecond. Here, we demonstrate a field-widened, multimode interferometer design that achieves a high interference visibility for spatially multimode beams with large time bin separations. The interference of the multimode beams is enabled using a multi-pass Herriott cell that enables a very long path separation with a small form-factor. The design is tested using both numerical ray-tracing simulations and proof-of-principle demonstrations. We create a prototype interferometer with a path length difference of 12ns and determine that it maintains a high interference visibility with a large field-of-view of 0.40.4^{\circ}.

引用

@article{arxiv.2608.13399,
  title  = {Field-Widened Multimode Interferometer with Long Time-Bin Delay Using a Multi-Pass Herriott Cell},
  author = {Ramy Tannous and Stéphane Vinet and Kaylee Sherk and Kimia Mohammadi and Thomas Jennewein},
  journal= {arXiv preprint arXiv:2608.13399},
  year   = {2026}
}

备注

17 pages, 8 figures