-
coherence remains a primary obstacle to achieving fault-tolerant quantum computing at a meaningful scale.1 We are examining a variety of constituent materials in superconducting quantum devices to correlate
-
, topography, …). Misinterpretation of signals results in errors that are important for nanometrology. These must be understood and corrected to obtain sufficient accuracy. We expect opportunities
-
the metal contacts of the probe landing site, limiting the number of contact cycles that can be made; (2) the micron-scale positioning error is on the order of the guided wavelength in the devices
Searches related to error correction
Enter an email to receive alerts for error-correction positions