Measuring the locations and properties of VHF sources emitted from an aircraft flying through high clouds

Fuente: arXiv
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Main Authors: Scholten, Olaf, Lourens, Marten, Buitink, Stijn, Cummer, Steve, Dwyer, Joe, Hare, Brian M., Huege, Tim, Liu, Ningyu, Mulrey, Katie, Nelles, Anna, Sterpka, Chris, Trinh, T. N. Gia, Turekova, Paulina, ter Veen, Sander
Format: Preprint
Published: 2025
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author Scholten, Olaf
Lourens, Marten
Buitink, Stijn
Cummer, Steve
Dwyer, Joe
Hare, Brian M.
Huege, Tim
Liu, Ningyu
Mulrey, Katie
Nelles, Anna
Sterpka, Chris
Trinh, T. N. Gia
Turekova, Paulina
ter Veen, Sander
author_facet Scholten, Olaf
Lourens, Marten
Buitink, Stijn
Cummer, Steve
Dwyer, Joe
Hare, Brian M.
Huege, Tim
Liu, Ningyu
Mulrey, Katie
Nelles, Anna
Sterpka, Chris
Trinh, T. N. Gia
Turekova, Paulina
ter Veen, Sander
contents We show that it is possible to locate the few places on the body of an airplane, while it is flying through high clouds, from which broad-band, pulsed, radiation is emitted at Very High Frequency (VHF) radio frequencies. This serendipitous discovery was made whilst imaging a lightning flash using the Low-Frequency Array (LOFAR). This observation provides insights into the way the airplane sheds the electrical charge it acquires when flying through clouds. Furthermore, this observation allowed us to test and improve the precision and accuracy for our lightning observation techniques. Our new results indicate that with the improved procedure the location precision for strong pulses is better than 50~cm, with the orientation of linear polarization being accurate to within 25$^\circ$. For the present case of a Boeing 777-300ER, VHF emissions were observed exclusively associated with the two engines, as well as a specific spot on the tail. Despite the aircraft flying through clouds at an altitude of 8~km, we did not detect any emissions from electrostatic wicks.
format Preprint
id arxiv_https___arxiv_org_abs_2509_16574
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Measuring the locations and properties of VHF sources emitted from an aircraft flying through high clouds
Scholten, Olaf
Lourens, Marten
Buitink, Stijn
Cummer, Steve
Dwyer, Joe
Hare, Brian M.
Huege, Tim
Liu, Ningyu
Mulrey, Katie
Nelles, Anna
Sterpka, Chris
Trinh, T. N. Gia
Turekova, Paulina
ter Veen, Sander
Plasma Physics
Instrumentation and Methods for Astrophysics
Geophysics
We show that it is possible to locate the few places on the body of an airplane, while it is flying through high clouds, from which broad-band, pulsed, radiation is emitted at Very High Frequency (VHF) radio frequencies. This serendipitous discovery was made whilst imaging a lightning flash using the Low-Frequency Array (LOFAR). This observation provides insights into the way the airplane sheds the electrical charge it acquires when flying through clouds. Furthermore, this observation allowed us to test and improve the precision and accuracy for our lightning observation techniques. Our new results indicate that with the improved procedure the location precision for strong pulses is better than 50~cm, with the orientation of linear polarization being accurate to within 25$^\circ$. For the present case of a Boeing 777-300ER, VHF emissions were observed exclusively associated with the two engines, as well as a specific spot on the tail. Despite the aircraft flying through clouds at an altitude of 8~km, we did not detect any emissions from electrostatic wicks.
title Measuring the locations and properties of VHF sources emitted from an aircraft flying through high clouds
topic Plasma Physics
Instrumentation and Methods for Astrophysics
Geophysics
url https://arxiv.org/abs/2509.16574