Scientific Frontline<p>Modern <a href="https://mastodon.social/tags/electronics" class="mention hashtag" rel="nofollow noopener noreferrer" target="_blank">#<span>electronics</span></a> face critical challenges, including high <a href="https://mastodon.social/tags/energy" class="mention hashtag" rel="nofollow noopener noreferrer" target="_blank">#<span>energy</span></a> consumption and increasing design complexity. In this context, <a href="https://mastodon.social/tags/magnonics" class="mention hashtag" rel="nofollow noopener noreferrer" target="_blank">#<span>magnonics</span></a> — the use of <a href="https://mastodon.social/tags/magnons" class="mention hashtag" rel="nofollow noopener noreferrer" target="_blank">#<span>magnons</span></a>, or quantized spin waves in magnetic materials — offers a promising alternative.<br><a href="https://mastodon.social/tags/Physics" class="mention hashtag" rel="nofollow noopener noreferrer" target="_blank">#<span>Physics</span></a> <a href="https://mastodon.social/tags/sflorg" class="mention hashtag" rel="nofollow noopener noreferrer" target="_blank">#<span>sflorg</span></a><br><a href="https://www.sflorg.com/2025/02/phy02042501.html" rel="nofollow noopener noreferrer" translate="no" target="_blank"><span class="invisible">https://www.</span><span class="ellipsis">sflorg.com/2025/02/phy02042501</span><span class="invisible">.html</span></a></p>