Voir la notice de l'article provenant de la source Math-Net.Ru
@article{JSFU_2018_11_2_a8, author = {Sergey I. Burkov and Olga P. Zolotova and Pavel P. Turchin and Vladimir I. Turchin and Boris P. Sorokin}, title = {Metal layer thickness influence on the dispersion characteristics of acoustic waves in the layered structure {``Me/ZnO/Me/diamond''}}, journal = {\v{Z}urnal Sibirskogo federalʹnogo universiteta. Matematika i fizika}, pages = {206--218}, publisher = {mathdoc}, volume = {11}, number = {2}, year = {2018}, language = {en}, url = {http://geodesic.mathdoc.fr/item/JSFU_2018_11_2_a8/} }
TY - JOUR AU - Sergey I. Burkov AU - Olga P. Zolotova AU - Pavel P. Turchin AU - Vladimir I. Turchin AU - Boris P. Sorokin TI - Metal layer thickness influence on the dispersion characteristics of acoustic waves in the layered structure ``Me/ZnO/Me/diamond'' JO - Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika PY - 2018 SP - 206 EP - 218 VL - 11 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/JSFU_2018_11_2_a8/ LA - en ID - JSFU_2018_11_2_a8 ER -
%0 Journal Article %A Sergey I. Burkov %A Olga P. Zolotova %A Pavel P. Turchin %A Vladimir I. Turchin %A Boris P. Sorokin %T Metal layer thickness influence on the dispersion characteristics of acoustic waves in the layered structure ``Me/ZnO/Me/diamond'' %J Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika %D 2018 %P 206-218 %V 11 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/JSFU_2018_11_2_a8/ %G en %F JSFU_2018_11_2_a8
Sergey I. Burkov; Olga P. Zolotova; Pavel P. Turchin; Vladimir I. Turchin; Boris P. Sorokin. Metal layer thickness influence on the dispersion characteristics of acoustic waves in the layered structure ``Me/ZnO/Me/diamond''. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 11 (2018) no. 2, pp. 206-218. http://geodesic.mathdoc.fr/item/JSFU_2018_11_2_a8/
[1] S.G.Alekseev, Yu.V.Gulyaev, I.M.Kotelyanskii, G.D.Mansfeld, “Some trends in microwave acoustoelectronics development”, Physics-Uspekhi, 48:8 (2005), 855-859 | DOI
[2] H.Zhang, E.S.Kim, “Micromachined Acoustic Resonant Mass Sensor”, Journal of Microelectromechanical Systems, 14 (2005), 699–706 | DOI
[3] M.Benetti, D.Cannat, F.Di Pietrantonio, V.Foglietti, E.Verona, “Microbalance Chemical Sensor Based on Thin-Film Bulk Acoustic Wave Resonators”, Appl. Phys. Let., 87 (2005), 173504 | DOI
[4] J.Bjurstrom, G.Wingqvist, I.Katardjiev, “Synthesis of Textured Thin Piezoelectric AlN Films With a Nonzero C-axis Mean Tilt for the Fabrication of Shear Mode Resonators”, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, 53 (2006), 2095–2100 | DOI
[5] G.Wingqvist, J.Bjurstom, A.C.Hellgren, I.Katardjiev, “Immunosensor Utilizing a Shear Mode Thin Film Bulk Acoustic Sensor”, Sensors and Actuators B: Chemical, 127 (2007), 248–252 | DOI
[6] T.Nakamoto, T.Moriizumi, “A theory of a Quartz Crystal Microbalance Based Upon a Mason Equivalent Circuit”, Japanese Journal of Applied Physics, Part 1 (Regular Papers $\$ Short Notes), 29 (1990), 963–969 | DOI
[7] B.P.Sorokin, G.M.Kvashnin, A.V.Telichko, G.I.Gordeev, S.I.Burkov, V.D.Blank, “Study of High Overtone Bulk Acoustic Resonators Based on the Me1/AlN/Me2/(100) Diamond Piezoelectric Layered Structure”, Acoustical Physics, 61:4 (2015), 422–433 | DOI
[8] B.P.Sorokin, G.M.Kvashnin, A.V.Telichko, A.S.Novoselov, S.I.Burkov, “Lamb Waves Dispersion Curves for Diamond Based Piezoelectric Layered Structure”, Applied Physics Letters, 108:5 (2016), 113501 | DOI
[9] Ü. Özgür, Ya.I.Alivov, C.Liu, A.Teke, M.A.Reshchikov, S.Doǧan, A. Vrutin, S.-J.Cho, H.Morkoç, “A Comprehensive Review of ZnO Materials and Devices”, Journal of Applied Physics, 98 (2005) | DOI
[10] G.D.Mansfeld, S.G.Alekseev, I.M.Kotelyansky, “Acoustic HBAR Spectroscopy of Metal (W, Ti, Mo, Al) Thin Films”, Proc. Ultras. Symp., IEEE, 2001, 415–418
[11] G.W. Farnell, Acoustic Surface Waves Topics in Applied Physics, ed. A. A. Oliner, 1978
[12] O.P.Zolotova, S.I.Burkov, B.P.Sorokin, A.V.Telichko, “Elastic Waves in Piezoelectric Layered Structures”, J. of Sib. Fed. Univ., Math. $\$ Phys., 5 (2012), 164–186
[13] B.P.Sorokin, G.M.Kvashnin, A.V.Telichko, S.I.Burkov, V.D.Blank, “Piezoelectric-Layered Structures Based on Synthetic Diamond”, Piezoelectric Materials, ed. Toshio Ogawa, InTech, 2016, 161–199
[14] I.E.Kuznetsova, B.D.Zaitsev, S.G.Joshi, A.S.Kuznetsova, “Gravimetric Sensitivity of Acoustic Waves in Thin Piezoelectric Plates in the Presence of Liquids”, Techn. Phys. Lett., 32 (2006), 729–731 | DOI
[15] Wingqvist G., Yantchev V., Katardjiev I., “Mass Sensitivity of Multilayer Thin Film Resonant BAW Sensors”, Sensors and Actuators A: Physical, 148:1 (2008), 88–95 | DOI
[16] Z.Zhang, Z.Wen, C.Wang, “Investigation of Surface Acoustic Waves Propagating in ZnO–SiO$_2$–Si Multilayer Structure”, Ultrasonics, 53:2 (2013), 363–368 | DOI
[17] B.P.Sorokin, G.M.Kvashnin, M.S.Kuznetsov, A.V.Telichko, S.I.Burkov, “Experimental Investigation of the Linear and Nonlinear Elastic Properties of Synthetic Diamond Single Crystal”, Journal of Siberian Federal University. Math. $\$ Phys., 1:6 (2013), 120–126
[18] R.E.Macfarlane, J.A.Rayne, C.K.Jones, “Anomalous Temperature Dependence of Shear Modulus $S_{44}$ for Platinum”, Physics Letters, 18:2 (1965), 91–92 | DOI
[19] K.S.Aleksandrov, P.P.Turchin, G.T.Prodaivoda, “Calculation of Elastic Constants of Quasi-Isotropic Monomineral Rocks”, Izvestiya Physics of The Solid Earth C/C Of Fizika Zemli-Rossiiskaya Akademiya Nauk, 35 (1999), 282–290
[20] K.S.Aleksandrov, G.T.Prodaivoda, Anisotropy of the Elastic Properties of Minerals and Rocks, SB RAS Publishing House, Novosibirsk, 2000 (in Russian)
[21] I.E.Kuznetsova, B.D.Zaitsev, A.A.Teplykh, I.A.Borodina, “Hybridization of Acoustic Waves in Piezoelectric Plates”, Acoust. Physics, 53:1 (2007), 64–69 | DOI