Mid-and Near-IR Pump-Probe Study of Quasiparticle Dynamics in Ca<sub>3</sub>Ru<sub>2</sub>O<sub>7</sub>
ORAL
Abstract
We have investigated near-IR reflectivity dynamics of single crystals of the Ruddlesden-Popper ruthenate Ca3Ru2O7 using both near and mid infrared excitation. This correlated semimetal exhibits a pseudogap (~10meV) at Tc=48K, which coincides with an upturn in resistivity followed by a return to metallic behavior at 30K. Low-fluence pump-probe measurements have been able to establish the signatures of the pseudogap in both the rise-time and decay time of the near-IR reflectivity dynamics due to a phonon bottleneck [1]. Here measurements as a function of temperature, fluence, and pump wavelength show dynamics that indicate a possible photoinduced phase transition by comparison with pump-heating calculations and a fluence dependent rise-time that lasts up 20 picoseconds. Comparison with dynamics initiated with mid-infrared pump pulses do not indicate the excitation of coherent phonons as a large contributor to the observed response.
[1] Y. Yuan et al., “Ultrafast quasiparticle dynamics in the correlated semimetal Ca3Ru2O7,” Phys. Rev. B 99, 155111 (2019)
[1] Y. Yuan et al., “Ultrafast quasiparticle dynamics in the correlated semimetal Ca3Ru2O7,” Phys. Rev. B 99, 155111 (2019)
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Presenters
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Kelson Kaj
University of California, San Diego
Authors
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Kelson Kaj
University of California, San Diego
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Huaiyu (Hugo) Wang
Department of Material Science and Engineering, Pennsylvania State University
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Peter Kissin
University of California, San Diego
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Yakun Yuan
Department of Material Science and Engineering, Pennsylvania State University
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Varun Ramaprasad
University of California, San Diego, University of California San Diego
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Mustafa G Ali
University of California, San Diego
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Nathan Koocher
Northwestern University
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Danilo Puggioni
Northwestern University
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Venkatraman Gopalan
Pennsylvania State University
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Zhiqiang Mao
Pennsylvania State University
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James M Rondinelli
Northwestern University
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Richard D Averitt
University of California, San Diego