Surface acoustic wave devices have been fabricated on a GaAs 100 substrate to demonstrate the capability of 2D Raman microscopy as an imaging technique for acoustic waves on the surface of a piezoelectric substrate. Surface acoustic waves are generated using a two-port interdigitated transducer platform, which is modified to produce surface standing waves. We have derived an analytical model to relate Raman peak broadening to the near-surface strain field of the GaAs surface produced by the surface acoustic waves. Atomic force microscopy is used to confirm the presence of a standing acoustic wave, resolving a total vertical displacement of 3 nm at the antinode of the standing wave. Stress calculations are performed for both imaging techniques and are in good agreement, demonstrating the potential of this Raman analysis.

1.
C.
Campbell
,
Surface Acoustic Wave Devices and Their Signal Processing Applications
(
Academic Press
,
1989
).
2.
C. C. W.
Ruppel
,
L.
Reindl
, and
R.
Weigel
,
IEEE Microwave Mag.
3
,
65
(
2002
).
3.
C. C. W.
Ruppel
,
IEEE Trans. Ultrason. Ferroelectr. Freq. Control
64
,
1390
(
2017
).
4.
L. M.
Reindl
,
A.
Pohl
,
G.
Scholl
, and
R.
Weigel
,
IEEE Sens. J.
1
,
69
(
2001
).
5.
F.
Seifert
and
R.
Weigel
, in
27th European Microwave Conference (EuMC)
(
1997
), Vol.
2
, p.
1323
.
6.
T.
Morita
,
Y.
Watanabe
,
M.
Tanaka
, and
Y.
Nakazawa
, in
Proceedings-IEEE Ultrasonics Symposium
(
1992
), pp.
95
104
.
7.
C. J.
Sarabalis
,
T. P.
McKenna
,
R. N.
Patel
,
R.
Van Laer
, and
A. H.
Safavi-Naeini
,
APL Photonics
5
,
086104
(
2020
).
8.
P. J. M.
van der Slot
,
M. A. G.
Porcel
, and
K.-J.
Boller
,
Opt. Express
27
,
1433
(
2019
).
9.
S.
Kakio
,
Acta Phys. Pol., A
127
,
15
(
2015
).
10.
S. A.
Tadesse
and
M.
Li
,
Nat. Commun.
5
,
5402
(
2014
).
11.
M. M.
De Lima
and
P. V.
Santos
,
Rep. Prog. Phys.
68
,
1639
(
2005
).
12.
M. R.
Zakaria
,
M. A. F.
Shamsuddin
,
U.
Hashim
,
T.
Adam
, and
A. W.
Al-Mufti
, in
Proceedings of the International Conference on Intelligent Systems, Modelling and Simulation (ISMS)
(
2015
), pp.
760
764
.
13.
J.
Devkota
,
P. R.
Ohodnicki
, and
D. W.
Greve
,
Sensors
17
,
801
(
2017
).
14.
E.
Benes
,
M.
Groschl
,
W.
Burger
, and
M.
Schmid
,
Sens. Actuators A
1
,
13
15
(
1995
).
15.
P.
Nicolay
,
H.
Chambon
,
G.
Bruckner
,
C.
Gruber
,
S.
Ballandras
,
E.
Courjon
, and
M.
Stadler
,
Sensors
18
,
3482
(
2018
).
16.
T.
Hoang
,
Design and Realization of SAW Pressure Sensor Using Aluminum Nitride
(
L'Universite Joseph Fourier
,
2009
).
17.
C.
Fu
,
Y.
Ke
,
M.
Li
,
J.
Luo
,
H.
Li
,
G.
Liang
, and
P.
Fan
,
Sensors
17
,
1849
(
2017
).
18.
L. M.
Reindl
and
I. M.
Shrena
,
IEEE Trans. Ultrason. Ferroelectr. Freq. Control
51
,
1457
(
2004
).
19.
X. Y.
Du
,
Y. Q.
Fu
,
J. K.
Luo
,
A. J.
Flewitt
, and
W. I.
Milne
,
J. Appl. Phys.
105
,
024508
(
2009
).
20.
C. D.
Wood
,
S. D.
Evans
,
J. E.
Cunningham
,
R.
O'Rorke
,
C.
Wälti
, and
A. G.
Davies
,
Appl. Phys. Lett.
92
,
044104
(
2008
).
21.
D.
Kaiser
,
S. M.
Han
, and
T.
Sinno
,
J. Appl. Phys.
121
,
065303
(
2017
).
22.
B.
von Boehn
,
M.
Foerster
,
M.
von Boehn
,
J.
Prat
,
F.
Macià
,
B.
Casals
,
M. W.
Khaliq
,
A.
Hernández-Mínguez
,
L.
Aballe
, and
R.
Imbihl
,
Angew. Chem., Int. Ed.
59
(
45
),
20224
20229
(
2020
).
23.
M. J.
Aziz
,
P. C.
Sabin
, and
G. Q.
Lu
,
Phys. Rev. B
44
,
9812
(
1991
).
24.
R.
Mathew
,
Creating and Imaging Surface Acoustic Waves on GaAs
(
Reuble
,
2009
).
25.
R.
Loudon
, “
The Raman effect in crystals
,”
Adv. Phys.
13
,
423
482
(
1964
).
26.
I. D.
Wolf
,
Semicond. Sci. Technol.
11
,
139
(
1996
).
27.
F.
Cerderia
,
C. J.
Buchenauer
,
F. H.
Pollak
, and
M.
Cardona
,
Phys. Rev. B
5
,
580
(
1972
).
28.
S.
Ganesan
,
A.
Maradudin
, and
J.
Oitmaa
,
Ann. Phys.
56
,
556
(
1970
).
29.
M. I.
Bell
,
Phys. Status Solidi
53
,
675
(
1972
).
30.
F.
Iikawa
,
A.
Hernández-Mínguez
,
M.
Ramsteiner
, and
P. V.
Santos
,
Phys. Rev. B
93
,
195212
(
2016
).
31.
S.
Adachi
,
J. Appl. Phys.
58
,
R1
(
1985
).
32.
M.
Hunermann
,
W.
Richter
, and
J.
Saalmuller
,
Phys. Rev. B
34
,
5381
(
1986
).
33.
A. M.
Ardila
,
O.
Martínez
,
M.
Avella
,
J.
Jiménez
,
B.
Gérard
,
J.
Napierala
, and
E.
Gil-Lafon
,
J. Appl. Phys.
91
,
5045
(
2002
).
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