![]() Laser
Diagnostic
LabDepartment of Mechanical Engineering, Clemson University |
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Publications Journal
Articles 29. Cai, W.; Ma, L.; Improved
Monte Carlo modeling for multiple scattering calculations, Chinese
Optics
Letters, v. 10, no. 1, Jan. 2012. 28. Ma, L.; Analysis
of
error in soot characterization using scattering-based techniques,
Particuology,
article in press, 2011. 27. Zhao, Y.; Tong, C.; Ma,
L.; Kinetics
of
I2 and HI photodissociation with implications in flame
diagnostics,
Applied Physics B, article in press, 2011. 26. Cai, W.; Ewing, D.J..;
Ma, L.; Investigation
of
temperature parallel simulated annealing for optimizing continuous
functions
with application to hyperspectral tomography, Applied Mathematics
and
Computation, v. 217, no. 12, p. 5754-5767, Feb. 2011. 25. An, X.; Kraetschmer, T.;
Takami, K.; Sanders, S.T.; Ma, L.; Cai, W.; Li, X.; Roy, S.; Gord,
J.R.; Validation
of
temperature imaging by H2O absorption spectroscopy using
hyperspectral tomography in controlled experiments, Applied Optics,
v. 50,
no. 4, p. A29-A37, Feb. 2011. Also
selected
for publication in the Virtual Journal for Biomedical Optics
(VJBO), v. 6, no. 3, Mar 2011. 24. Cai, W.; Ma, L.; Comparison of
approaches
based on optimization and algebraic iteration for binary tomography,
Computer
Physics Communications, vol. 181, no. 12, p. 1974-1981, Dec. 2010. 23. Ma, L.; Li, X.; Cai, W.;
Roy, S.; Gord, J.R.; Sanders, S.T.; Selection
of
multiple optimal absorption transitions for non-uniform temperature
sensing,
Applied Spectroscopy, v. 64, no. 11, p. 1274-1282, Nov. 2010. 22. Cai, W.; Kranendonk, L.;
Lee, T.; Ma, L.; Characterization
of
composite nanoparticles using an improved light scattering program for
coated spheres, Computer Physics Communications, v. 181, p.
978-984, May 2010. 21. Zhao, Y.; Tong, C.; Ma,
L.; New
laser diagnostic based on photodissociation spectroscopy for imaging
mixture
fraction in a non-premixed jet flame, Applied Spectroscopy, v. 64,
no. 4,
p. 377-383, April 2010. 20. Cai, W.; Ma, L.; Hyperspectral
tomography
based on proper orthogonal decomposition: as motivated by imaging
diagnostics of unsteady reactive flows, Applied Optics, v. 49, no.
4, p.
601-610, Feb. 2010. 19. Cai, W.; Ma, L.; Applications
of
critical temperature in minimizing functions of continuous variables
with
simulated annealing algorithm, Computer Physics Communications, v.
181, p.
11-16, Jan. 2010. 18. Taha, A.; Ewing, D. J.;
Zhao, Y.; Ma, L.; Numerical
investigation
of phase change materials for thermal systems, SAE
International Journal of Materials and Manufacturing, v. 2, no. 1, p.
85-91,
Oct. 2009. 17. Ma, L.; Kranendonk, L.;
Cai, W.; Zhao, Y.; Baba, J.; Application
of
simulated annealing for simultaneous retrieval of particle size
distribution
and refractive index, Journal of Aerosol Science, v. 40, no. 7, p.
588-596,
Jul. 2009. 16. Ma, L.; Cai, W.; Caswell,
A.W.; Kraetschmer, T.; Sanders, S.T.; Roy, S.; Gord, J.R.; Tomographic
imaging
of temperature and chemical species based on hyperspectral absorption
spectroscopy, Optics Express, v. 17, no. 10, p. 8602-8613, May 2009. 15. Zhao, Y.; Ma, L.; Assessment
of
two fractal scattering models for the prediction of the optical
characteristics of soot aggregates,
Journal
of Quantitative Spectroscopy and Radiative Transfer, v. 110, no. 4-5,
p. 315-322, Mar. 2009. 14. Zhao, Y.; Tong, C.; Ma,
L.; Assessment
of
a novel flow visualization technique using photodissociation
spectroscopy, Applied Spectroscopy, v. 63, no. 2; p. 199-206, Feb.
2009. 13. Zhao, Y.; Ma, L; Applicable
range
of Rayleigh-Debye-Gans theory for calculating the scattering
matrix
of soot aggregates, Applied Optics, v. 48, no. 3; p. 591-597, Jan.
2009. 12. Cai, W.; Ma, L.; Information
content of scattering
measurements and characterization of spheroids, Journal of Aerosol
Science,
v. 39; p. 1032-1039, Dec. 2008. 11. Cai, W.; Zhao, Y.; Ma,
L.; Direct
recursion of
the ratio of bessel functions with applications to
Mie
scattering calculations, Journal of Quantitative Spectroscopy and
Radiative
Transfer, v. 109, no. 16; p. 2673-2678, Nov. 2008. 10. Ma, L.; Cai, W.; Determination
of
the optimal regularization parameters in hyperspectral tomography,
Applied Optics, v. 47, no. 23, p. 4186-4192, Aug. 2008. 9. Cai, W.; Ewing, D.J., and
Ma, L.; Application
of
simulated annealing for multispectral tomography,
Computer
Physics Communications, v. 179; p. 250-255, Aug. 2008. 8. Cai, W; Ma, L.; Numerical
investigation
of hyperspectral tomography for simultaneous temperature and
concentration imaging,
Applied
Optics, v. 47, no. 21, p. 3751-3759, Jul. 2008. 7. Grujicic, M.; Pandurangan,
B.; Bell, W. C.; Daqaq, M.; Ma, L.; Seyr, N.; Erdmann, M.; Holzleitner,
J.; A
computational analysis
and suitability assessment of cold-gas dynamic spraying of
glass-fiber-reinforced poly-amide 6 for
use in direct-adhesion
polymer
metal hybrid
components , Applied Surface Science, v. 254, p. 2136-2145, Jan.
2008. 6. Ma, L.; Measurement of
aerosol
size distribution function using Mie scattering-mathematical
considerations; Journal Aerosol Science, v. 38, no. 11; p.
1150-1162, Nov.
2007. 5. Ma, L.; Hanson, R.K.; Measurement of
aerosol size distribution
functions wavelength-multiplexed
laser
extinction, Applied Physics B, v. 81, no. 4, p. 567-576,
Aug.2005. 4. Mattison, D.W.; Brophy, C.M.;
Sanders, S.T.; Ma, L.; Hinckley, K.M.; Jeffries, J.B.; Hanson, R.K.; Pulse
detonation
engine characterization and control using tunable diode-laser
sensors, Journal of Propulsion and Power, v. 19, p. 568-572, Aug.
2003. 3. Jeffries, J.B.; Sanders,
S.T.; Zhou, X.; Ma, L.; Mattison, D.W.; Hanson, R.K.; Scanned wavelength
diode-laser
sensors for harsh
environments, Proceedings of the SPIE The International Society for
Optical
Engineers., v. 4817, p. 88-95, Jul. 2002. 2. Sanders, S.T.; Mattison,
D.W.; Ma, L.; Jeffries, J.B.; Hanson, R.K.; Wavelength-agile
diode-laser
sensing strategies for monitoring gas properties in optically harsh
flows: application in cesium-seeded pulse detonation engine, Optics
Express, v. 10, p. 505-514, Jun. 2002. 1. Ma, L.; Sanders, S.T.;
Jeffries, J.B.; Hanson, R.K.; Monitoring
and
control of a pulse detonation
engine
using a diode-laser fuel
concentration
and temperature sensor. Proceedings of the Combustion Institute, v.
29, no.
1, p.161-166, Jan. 2002. Also presented at the 29th International
Symposium on
Combustion, Sapporo, Japan; Jul. 21-25, 2002. |