A tabletop x-ray tomography instrument for nanometer-scale imaging: demonstration of the 1,000-element transition-edge sensor subarray
Abstract
We report on the 1,000-element transition-edge sensor (TES) x-ray spectrometer implementation of the TOMographic Circuit Analysis Tool (TOMCAT). TOMCAT combines a high spatial resolution scanning electron microscope (SEM) with a highly efficient and pixelated TES spectrometer to reconstruct three-dimensional maps of nanoscale integrated circuits (ICs). A 240-pixel prototype spectrometer was recently used to reconstruct ICs at the 130 nm technology node, but to increase imaging speed to more practical levels, the detector efficiency needs to be improved. For this reason, we are building a spectrometer that will eventually contain 3,000 TES microcalorimeters read out with microwave superconducting quantum interference device (SQUID) multiplexing, and we currently have commissioned a 1,000 TES subarray. This still represents a significant improvement from the 240-pixel system and allows us to begin characterizing the full spectrometer performance. Of the 992 maximimum available readout channels, we have yielded 818 devices, representing the largest number of TES x-ray microcalorimeters simultaneously read out to date. These microcalorimeters have been optimized for pulse speed rather than purely energy resolution, and we measure a FWHM energy resolution of 14 eV at the 8.0 keV Cu K line.
Keywords
Cite
@article{arxiv.2212.12073,
title = {A tabletop x-ray tomography instrument for nanometer-scale imaging: demonstration of the 1,000-element transition-edge sensor subarray},
author = {Paul Szypryt and Nathan Nakamura and Daniel T. Becker and Douglas A. Bennett and Amber L. Dagel and W. Bertrand Doriese and Joseph W. Fowler and Johnathon D. Gard and J. Zachariah Harris and Gene C. Hilton and Jozsef Imrek and Edward S. Jimenez and Kurt W. Larson and Zachary H. Levine and John A. B. Mates and D. McArthur and Luis Miaja-Avila and Kelsey M. Morgan and Galen C. O'Neil and Nathan J. Ortiz and Christine G. Pappas and Daniel R. Schmidt and Kyle R. Thompson and Joel N. Ullom and Leila Vale and Michael R. Vissers and Christopher Walker and Joel C. Weber and Abigail L. Wessels and Jason W. Wheeler and Daniel S. Swetz},
journal= {arXiv preprint arXiv:2212.12073},
year = {2023}
}
Comments
5 pages, 4 figures, submitted to IEEE Transactions on Applied Superconductivity