Fermi Surface Study of β′′-(BEDT-TTF)(TCNQ) by Magnetooptical Measurements

We have performed magnetooptical measurements of β′′-(BEDT-TTF)(TCNQ) using a cavity perturbation technique with a millimeter vector network analyzer (MVNA) and a 14 T superconducting magnet at IMR, Tohoku University. The results of ADMRO and SdH measurements at low temperatures are not consistent w...

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Published inSynthetic metals Vol. 153; no. 1; pp. 369 - 372
Main Authors Kimata, M., Oshima, Y., Koyama, K., Ohta, H., Motokawa, M., Yamamoto, H.M., Kato, R.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Lausanne Elsevier B.V 21.09.2005
Amsterdam Elsevier Science
New York, NY
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ISSN0379-6779
1879-3290
DOI10.1016/j.synthmet.2005.07.308

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Abstract We have performed magnetooptical measurements of β′′-(BEDT-TTF)(TCNQ) using a cavity perturbation technique with a millimeter vector network analyzer (MVNA) and a 14 T superconducting magnet at IMR, Tohoku University. The results of ADMRO and SdH measurements at low temperatures are not consistent with the band calculation result. Therefore, we are interested in Fermi surfaces at low temperatures and have performed magnetooptical measurements of β′′-(BEDT-TTF)(TCNQ). Although the band calculation and ADMRO results suggest the existence of Q1D FS, our results suggest the existence of Q2D FS only. From the results of magnetooptical measurements, we discuss the FS topology of this system at low temperatures.
AbstractList We have performed magnetooptical measurements of β′′-(BEDT-TTF)(TCNQ) using a cavity perturbation technique with a millimeter vector network analyzer (MVNA) and a 14 T superconducting magnet at IMR, Tohoku University. The results of ADMRO and SdH measurements at low temperatures are not consistent with the band calculation result. Therefore, we are interested in Fermi surfaces at low temperatures and have performed magnetooptical measurements of β′′-(BEDT-TTF)(TCNQ). Although the band calculation and ADMRO results suggest the existence of Q1D FS, our results suggest the existence of Q2D FS only. From the results of magnetooptical measurements, we discuss the FS topology of this system at low temperatures.
We have performed magnetooptical measurements of D*b''-(BEDT-TTF)(TCNQ) using a cavity perturbation technique with a millimeter vector network analyzer (MVNA) and a 14 T superconducting magnet at IMR, Tohoku University. The results of ADMRO and SdH measurements at low temperatures are not consistent with the band calculation result. Therefore, we are interested in Fermi surfaces at low temperatures and have performed magnetooptical measurements of D*b''-(BEDT-TTF)(TCNQ). Although the band calculation and ADMRO results suggest the existence of Q1D FS, our results suggest the existence of Q2D FS only. From the results of magnetooptical measurements, we discuss the FS topology of this system at low temperatures.
Author Koyama, K.
Ohta, H.
Motokawa, M.
Yamamoto, H.M.
Kato, R.
Oshima, Y.
Kimata, M.
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Issue 1
Keywords Magnetotransport
Transport measurements
Organic conductors based on radical cation and/or anion salt
Other phase transition
Organic conductors
Sulfur heterocycle
BEDT-TTF
Perturbation techniques
Magneto-optical effects
Microwave resonator
Fermi surface
7,7,8,8-Tetracyanoquinodimethane
Magnetoresistance
magnetotransport
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Snippet We have performed magnetooptical measurements of β′′-(BEDT-TTF)(TCNQ) using a cavity perturbation technique with a millimeter vector network analyzer (MVNA)...
We have performed magnetooptical measurements of D*b''-(BEDT-TTF)(TCNQ) using a cavity perturbation technique with a millimeter vector network analyzer (MVNA)...
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SubjectTerms Condensed matter: electronic structure, electrical, magnetic, and optical properties
Electron states
Exact sciences and technology
Fermi surface: calculations and measurements; effective mass, g factor
Magnetotransport
Organic conductors based on radical cation and/or anion salt
Other phase transition
Physics
Transport measurements
Title Fermi Surface Study of β′′-(BEDT-TTF)(TCNQ) by Magnetooptical Measurements
URI https://dx.doi.org/10.1016/j.synthmet.2005.07.308
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