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Selective spin and nematic excitations using polarized pump pulses

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arxiv 2005.01013 v1 pith:G4EKB7HU submitted 2020-05-03 cond-mat.supr-con

Selective spin and nematic excitations using polarized pump pulses

classification cond-mat.supr-con
keywords electronnematicorderpumptimecafe2as2excitationsmagnetic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum materials display exotic behaviours related to the interplay between temperature-driven phase transitions. Here, we study electron dynamics in one such material, CaFe2As2, a parent Fe-based superconductor, employing time and angle-resolved photoemission spectroscopy. CaFe2As2 exhibits concomitant transition to spin density wave state and nematic order below 170 K. We discover that magnetic excitations can be induced selectively, by using polarized pump pulses, significantly before the destruction of nematic order. More specifically, we observe that s-polarized light enhances electron temperature by several hundreds of degrees at a time scale of about 200 fs, while the temperature of the electrons participating in magnetic order can be enhanced by similar amount at a much faster time scale (50 fs) using p-polarized pump pulse. These results provide a pathway to achieve selective electron heating, which is not possible with other methods, as well as to disentangle phase transitions in quantum materials.

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