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Updated: Jul 25, 2026

Implementation of a Reference Interferometer for Nanodetection
Published on: April 26, 2014
Impact of Soil-Based Insulation on Ultrahigh-Resolution Fiber-Optic Interferometry
Nabil Md Rakinul Hoque1, Lingze Duan1
1Department of Physics and Astronomy, University of Alabama in Huntsville, Huntsville, AL 35899, USA.
Abstract:
High resolution optical interferometry often requires thermal and acoustic insultation to reduce and remove environment-induced fluctuations. Broader applications of interferometric optical sensors in the future call for low-cost materials with both low thermal diffusivity and good soundproofing capability. In this paper, we explore the feasibility and effectiveness of natural soil as an insulation material for ultrahigh-resolution fiber-optic interferometry. An insulation chamber surrounded by soil is constructed, and its impact on the noise reduction of a Mach-Zehnder Fabry-Perot hybrid fiber interferometer is evaluated. Our results indicate that soil can effectively reduce ambient noise across a broad frequency range. Moreover, compared to conventional insulation materials such as polyurethane foam, soil shows superior insulation performance at low frequencies and thereby affords better long-term stability. This work demonstrates the practicability of soil as a legitimate option of insulation material for precision optical experiments.

