Probing the Fermi surface with Quantum Oscillation Measurements in the Dirac semimetal TaNiTe$_5$

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Hauptverfasser: Daschner, Maximilian, Gudac, Bruno, Novak, Mario, Liu, Cheng, Grosche, Friedrich Malte, Kokanović, Ivan
Format: Preprint
Veröffentlicht: 2024
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author Daschner, Maximilian
Gudac, Bruno
Novak, Mario
Liu, Cheng
Grosche, Friedrich Malte
Kokanović, Ivan
author_facet Daschner, Maximilian
Gudac, Bruno
Novak, Mario
Liu, Cheng
Grosche, Friedrich Malte
Kokanović, Ivan
contents We report a detailed investigation of the Fermi surface in the layered Dirac semimetal TaNiTe$_5$. We probed the magnetization, magnetic torque and magnetoresistance in high-quality single crystals. Pronounced Shubnikov - de Haas (SdH) and de Haas - van Alphen (dHvA) oscillations are observed in magnetic fields above 3T and at temperatures of up to 22K. Multiple fundamental frequencies and light effective quasiparticle masses are obtained by fast Fourier transformation (FFT) and Lifshitz-Kosevich (LK) formula fits. The high resolution of the low-temperature FFT spectra allows us to investigate individual peaks in detail for the magnetic fields applied along all three crystallographic axes and the planes in between. Our investigation can confirm the density functional theory (DFT) calculated band structure and its corresponding Fermi surface.
format Preprint
id arxiv_https___arxiv_org_abs_2403_12921
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Probing the Fermi surface with Quantum Oscillation Measurements in the Dirac semimetal TaNiTe$_5$
Daschner, Maximilian
Gudac, Bruno
Novak, Mario
Liu, Cheng
Grosche, Friedrich Malte
Kokanović, Ivan
Mesoscale and Nanoscale Physics
We report a detailed investigation of the Fermi surface in the layered Dirac semimetal TaNiTe$_5$. We probed the magnetization, magnetic torque and magnetoresistance in high-quality single crystals. Pronounced Shubnikov - de Haas (SdH) and de Haas - van Alphen (dHvA) oscillations are observed in magnetic fields above 3T and at temperatures of up to 22K. Multiple fundamental frequencies and light effective quasiparticle masses are obtained by fast Fourier transformation (FFT) and Lifshitz-Kosevich (LK) formula fits. The high resolution of the low-temperature FFT spectra allows us to investigate individual peaks in detail for the magnetic fields applied along all three crystallographic axes and the planes in between. Our investigation can confirm the density functional theory (DFT) calculated band structure and its corresponding Fermi surface.
title Probing the Fermi surface with Quantum Oscillation Measurements in the Dirac semimetal TaNiTe$_5$
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2403.12921