New acoustic-surface-wave zero-temperature cuts in Tl3TaSe4

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New acoustic-surface-wave zero-temperature cuts in Tl3TaSe4

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Theoretical results of acoustic-surface-wave (a.s.w.) zero-frequency-temperature-coefficient (f.t.c.) configurations in Tl3TaSe4 are discussed. Six selected cuts with an electromechanical coupling coefficient of up to 4% are described, as well as a zero-f.t.c. and zero-power-flow-angle cut with 2% coupling.

Inspec keywords: thallium compounds; acoustic surface wave devices; acoustic surface waves; tantalum compounds

Other keywords: Tl3TaSe4; electromechanical coupling coefficient; zero frequency temperature coefficient; acoustic surface waves

Subjects: Mechanical and acoustical properties of solid surfaces and interfaces; Ultrasonics, quantum acoustics, and physical effects of sound; Acoustic signal processing; Transduction; devices for the generation and reproduction of sound; Acoustic wave devices

References

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      • T.J. Isaacs , R.W. Weinert . Crystal growth properties of Tl3BX4 crystals for acoustic surface-wave bulk acoustic devices. J. Electron. Mat. , 13 - 21
    2. 2)
      • J. Henaff , M. Feldmann . New acoustic-surface-wave zero-temperature cuts in Tl3VS4. Electron. Lett. , 300 - 302
    3. 3)
      • A. Jhunjhunwala , J.F. Vetelino , J.C Field . Temperature-compensated cuts with zero power flow in Tl3VS4 Tl3TaSe4. Electron. Lett. , 683 - 684
    4. 4)
      • C. Crevecoeur . Some ternary thallium chalcogenides. Acta Cryst.
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