Microelectronics, Volume. 52, Issue 1, 82(2022)
Research on a Surface Acoustic Wave Amplifier Based on Multilayer Graphene
[1] [1] NOVOSELOV K S, GEIM A K, MOROZOV S V, et al. Electric field effect in atomically thin carbon films [J]. Science, 2004, 306(5696): 666-669.
[2] [2] HAN T H, LEE Y, CHOI M R, et al. Extremely efficient flexible organic light-emitting diodes with modified graphene anode [J]. Nature Photonics, 2012, 6(2): 105-110.
[3] [3] KIM R H, BAE M H, KIM D G, et al.Stretchable, transparent graphene interconnects for arrays of microscale inorganic light emitting diodes on rubber substrates [J]. Nano Lett, 2015, 11(9): 3881-3886.
[4] [4] ROGERS J A. Making graphene for microelectronics [J]. Nature Nanotechnol, 2008, 3(5): 254-255.
[5] [5] BON A C,SUN Z, HASAN T, et al. Graphene photonics and optoelectronics [J]. Nature Photonics, 2010, 4(9): 611-622.
[6] [6] BAE S H, LEE Y, SHARMA B K, et al. Graphene-based transparent strain sensor [J]. Carbon, 2013, 51: 236-242.
[7] [7] KASHUBA A B. Conductivity of defectless graphene [J]. Physical Review, 2008, 78(8): 792-795.
[8] [8] DAWLATY J M, SHIVARAMAN S, CHANDRA- SHEKHAR M, et al. Measurement of ultrafast carrier dynamics in epitaxial graphene [J]. Appl Phys Lett, 2008, 92(4): 042116.1-042116.3.
[9] [9] BOUBANGA-TOMBET S, CHAN S, WATANABE T, et al. Ultrafast carrier dynamics and terahertz emission in optically pumped graphene at room temperature [J].Phys Rev B Condensed Matter, 2012, 85(3): 3125-3130.
[10] [10] RYZHII V, OTSUJI T, RYZHII M, et al. Effect of plasma resonances on dynamic characteristics of double graphene-layer optical modulator [J]. J Appl Phys, 2012, 112(10): 104507.
[11] [11] SANTOS P V, SCHUMANN T, JR M, et al. Acoustic-electric transport in epitaxial monolayer graphene on SiC [J]. Appl Phys Lett, 2013, 102(22):221907.1-221907.3.
[12] [12] THALMEIER P, DORA B, ZIEGLER K. Surface acoustic wave propagation in graphene [J]. Phys Rev B Condensed Matter, 2010, 81(4): 041409.
[15] [15] BANDHU L, NASH G R. Publisher’s note: temperature dependence of the acoustoelectric current in graphene [J]. Appl Phys Lett, 2015, 106(4): 049901.
[16] [16] MAYOROV A S, HUNTER N, MUCHENJE W, et al. Surface acoustic wave generation and detection using graphene interdigitated transducers on lithium niobate [J]. Appl Phys Lett, 2014, 104(8): 083509.1-083509.4.
[17] [17] HUTSON A R, MCFEE J H, WHITE D L. Ultrasonic amplification in CdS [J]. Phys Rev Lett, 1961, 7(6): 237-239.
[18] [18] COLLINS J H. Amplification of acoustic surface waves with adjacent semiconductor and piezoelectric crystals [J]. Appl Phys Lett, 1968, 13(9): 314-316.
[19] [19] INSEPO Z, EMELIN E, KONONENK O, et al. Surface acoustic wave amplification by direct current-voltage supplied to graphene film [J]. Appl Phys Lett, 2015, 106(2): 023505.1-023505.5.
[20] [20] STANISLAV O Y, KIRILL A K, VLADISLAV I P. Multilayer-graphene-based amplifier of surface acoustic waves [J]. AIP Advan, 2015, 5(5): 57144.
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HE Surong, ZHAO Cheng, LI Chenyuan, DENG Licheng, WANG Debo. Research on a Surface Acoustic Wave Amplifier Based on Multilayer Graphene[J]. Microelectronics, 2022, 52(1): 82
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Received: May. 15, 2021
Accepted: --
Published Online: Jun. 14, 2022
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