Keyphrases
Electric Oxygen Iodine Laser
100%
Atomic Iodine
76%
Swept Wing
76%
Laser Power
69%
Electric Discharge
65%
Ice Shape
63%
Laser System
50%
Continuous-wave Laser
49%
ElectricOIL
48%
Gas Mixture
43%
Radio-frequency Discharge
38%
Ice Accretion
33%
Aerodynamics
29%
NO Gas
29%
Oxygen Atom
27%
Electric Discharge Oxygen-iodine Laser
26%
Laser Output Power
23%
Gain Size
23%
Radio Frequency
23%
Geometric Fidelity
19%
Laser Oscillation
19%
Atomic Oxygen
19%
Supersonic Cavity
19%
Power Output
19%
Flow Field
18%
Iodine
18%
Laser Performance
18%
Reynolds number
17%
Power Enhancement
17%
Hybrid Electric
17%
Gas Flow
16%
Synthetic Ice
16%
Gain Recovery
16%
Wing Model
16%
Angle of Attack
15%
Span-wise
15%
Helium
15%
Wind Tunnel
15%
Wing Aerodynamics
15%
Low Reynolds number
14%
Molecular Iodine
13%
Mach number
12%
Superlinear
12%
Performance Enhancement
12%
Oxygen Discharge
12%
Discharge Performance
12%
Laser Cavity
12%
Iodine Laser
12%
Aerodynamic Measurement
11%
Aerodynamic Performance
11%
Engineering
Swept Wings
76%
Radio Frequency
71%
Laser System
69%
Laser Power
64%
Gas Mixture
59%
Continuous Wave
55%
Laser Output Power
50%
Ice Accretion
45%
Flow Rate
31%
Oxygen Atom
29%
Angle-of-Attack
22%
Mach Number
22%
Laser Cavity
21%
Leading Edge
20%
Gas Flow
19%
Laser Performance
19%
Flow Condition
18%
Resonant Energy
17%
Resonator
15%
Full Scale
15%
Energy Engineering
14%
Aerodynamic Performance
14%
Good Agreement
14%
NASA
13%
Wind Tunnel Test
13%
Tunnel Research
12%
Airfoil
11%
High Reynolds Number
11%
Reynolds' Number
11%
Simulation Tool
11%
Supersonic Flow
10%
Torr
10%
Experimental Investigation
10%
Pressure Range
10%
Flow Visualization
9%
Geometric Shape
9%
Accretion of Ice
8%
Design Method
8%
Line Shape
8%
Experimental Aerodynamics
8%
Excitation Frequency
8%
Fold Increase
8%
Size System
8%
Experimental Result
8%
Excited State
8%
Generation System
8%
Maximization
8%
Streamwise
8%
Leading Edge Vortex
8%
Icing Condition
7%