Estimating Soil Electrical Parameters in the Canadian High Arctic from Impedance Measurements of the MIST Antenna Above the Surface

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Hendricksen, I., Monsalve, R. A., Bidula, V., Altamirano, C., Bustos, R., Bye, C. H., Chiang, H. C., Guo, X., McGee, F., Mena, F. P., Nasu-Yu, L., Omelon, C., Restrepo, S. E., Sievers, J. L., Thomson, L., Thyagarajan, N.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917218418163712
author Hendricksen, I.
Monsalve, R. A.
Bidula, V.
Altamirano, C.
Bustos, R.
Bye, C. H.
Chiang, H. C.
Guo, X.
McGee, F.
Mena, F. P.
Nasu-Yu, L.
Omelon, C.
Restrepo, S. E.
Sievers, J. L.
Thomson, L.
Thyagarajan, N.
author_facet Hendricksen, I.
Monsalve, R. A.
Bidula, V.
Altamirano, C.
Bustos, R.
Bye, C. H.
Chiang, H. C.
Guo, X.
McGee, F.
Mena, F. P.
Nasu-Yu, L.
Omelon, C.
Restrepo, S. E.
Sievers, J. L.
Thomson, L.
Thyagarajan, N.
contents The MIST experiment aims to detect the cosmological 21-cm signal through sky observations at 25-125 MHz using a wide-beam antenna. The antenna is mounted above the soil and the beam characteristics are highly dependent on the soil's electrical properties. Accurate models for the beam obtained from electromagnetic simulations are crucial for detecting the 21-cm signal. Determining the soil properties to inform the beam simulations is therefore a very high priority for MIST. Here we report the first electrical characterization of the MIST observation site in the Canadian High Arctic, which was conducted in July, 2022. The electrical parameters were estimated using impedance measurements of the instrument's antenna, which is a very advantageous approach for MIST. Our best-fit soil model is consistent with a thawed active layer underlain by permafrost, and the parameters were estimated with a precision close to the requirements for the detection of the cosmological 21-cm signal.
format Preprint
id arxiv_https___arxiv_org_abs_2504_14444
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Estimating Soil Electrical Parameters in the Canadian High Arctic from Impedance Measurements of the MIST Antenna Above the Surface
Hendricksen, I.
Monsalve, R. A.
Bidula, V.
Altamirano, C.
Bustos, R.
Bye, C. H.
Chiang, H. C.
Guo, X.
McGee, F.
Mena, F. P.
Nasu-Yu, L.
Omelon, C.
Restrepo, S. E.
Sievers, J. L.
Thomson, L.
Thyagarajan, N.
Geophysics
Instrumentation and Methods for Astrophysics
The MIST experiment aims to detect the cosmological 21-cm signal through sky observations at 25-125 MHz using a wide-beam antenna. The antenna is mounted above the soil and the beam characteristics are highly dependent on the soil's electrical properties. Accurate models for the beam obtained from electromagnetic simulations are crucial for detecting the 21-cm signal. Determining the soil properties to inform the beam simulations is therefore a very high priority for MIST. Here we report the first electrical characterization of the MIST observation site in the Canadian High Arctic, which was conducted in July, 2022. The electrical parameters were estimated using impedance measurements of the instrument's antenna, which is a very advantageous approach for MIST. Our best-fit soil model is consistent with a thawed active layer underlain by permafrost, and the parameters were estimated with a precision close to the requirements for the detection of the cosmological 21-cm signal.
title Estimating Soil Electrical Parameters in the Canadian High Arctic from Impedance Measurements of the MIST Antenna Above the Surface
topic Geophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2504.14444