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        <dc:title>Observation of a Goldstone mode in the broken helix by time-resolved optical polarimetry</dc:title>
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        <bibo:abstract>Magnets with isotropic easy-plane symmetry host Goldstone modes that can be leveraged for efficient
spin transport. Here, we present a time-resolved optical polarimetry technique that allows us to detect and
characterize such low-frequency modes, and use it to observe the Goldstone mode in the multi-Q broken helix
phase of EuIn2As2. The strength of our technique comes from the ability to distinguish between nematic and
magnetization dynamics in order to yield information about the mode structure, in addition to its frequency. We
find that the nearly uniform spin precession characteristic of a Goldstone mode is realized only when a small
magnetic field is used to unpin the broken helix from local strain generated during crystal growth. In this regime,
the mode frequency scales linearly with the applied field due to the ground state C2z symmetry of the broken
helix. Our work shows how optical polarimetry can be used to study the Goldstone modes of complex magnets.</bibo:abstract>
        <bibo:volume>113</bibo:volume>
        <bibo:issue>22</bibo:issue>
        <dc:publisher>American Physical Society</dc:publisher>
        <bibo:doi rdf:resource="10.1103/b48p-kw5l" />
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