<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Quantum Sensing | Superconducting Quantum Systems Lab</title><link>https://sqs-lab.netlify.app/tags/quantum-sensing/</link><atom:link href="https://sqs-lab.netlify.app/tags/quantum-sensing/index.xml" rel="self" type="application/rss+xml"/><description>Quantum Sensing</description><generator>HugoBlox Kit (https://hugoblox.com)</generator><language>en</language><lastBuildDate>Wed, 20 May 2026 00:00:00 +0000</lastBuildDate><image><url>https://sqs-lab.netlify.app/media/icon_hu_a6f9d0500e0d7ed4.png</url><title>Quantum Sensing</title><link>https://sqs-lab.netlify.app/tags/quantum-sensing/</link></image><item><title>Hybrid Optomechanics</title><link>https://sqs-lab.netlify.app/projects/hybrid-optomechanics/</link><pubDate>Wed, 20 May 2026 00:00:00 +0000</pubDate><guid>https://sqs-lab.netlify.app/projects/hybrid-optomechanics/</guid><description>&lt;p&gt;We explore hybrid devices where superconducting microwave circuits couple to mechanical degrees of freedom.&lt;/p&gt;
&lt;p&gt;These systems can connect microwave photons, motion, and dissipation in useful ways, opening paths toward quantum transduction, sensitive force and displacement measurement, and new regimes of macroscopic quantum control.&lt;/p&gt;</description></item></channel></rss>