We present a novel electrical technique to measure the tension of wires in multi-wire drift chambers. We create alternating electric fields by biasing adjacent wires on both sides of a test wire with a superposition of positive and negative DC voltages on an AC signal (VAC±VDC). The resulting oscillations of the wire will display a resonance at its natural frequency, and the corresponding change of the capacitance will lead to a measurable current. This scheme is scalable to multiple wires and therefore enables us to precisely measure the tension of a large number of wires in a short time. This technique can also be applied at cryogenic temperatures making it an attractive solution for future large time-projection chambers such as the DUNE detector. We present the concept, an example implementation and its performance in a real-world scenario and discuss the limitations of the sensitivity of the system in terms of voltage and wire length.
@article{arxiv.1804.05941,
title = {A Novel Electrical Method to Measure Wire Tensions for Time Projection Chambers},
author = {D. Garcia-Gamez and V. Basque and T. G. Brooks and J. J. Evans and M. Perry and S. Söldner-Rembold and F. Spagliardi and A. M. Szelc},
journal= {arXiv preprint arXiv:1804.05941},
year = {2018}
}