Keyphrases
Intracavity Laser Absorption Spectroscopy (ICLAS)
100%
Au(111)
52%
Burner
38%
Low Pressure
35%
Translational Energy
34%
Ammonia
34%
Vibrational Excitation
33%
Absolute Concentration
33%
Iron Oxide Nanoparticles
33%
Metal Surface
32%
Concentration Profile
32%
Gas Phase
32%
Methane-air Flame
29%
State-to-state
28%
Non-adiabatic
28%
Iron Pentacarbonyl
28%
Quartz Crystal Microbalance with Dissipation (QCM-D)
28%
Incidence Energy
27%
Absorption Spectroscopy
25%
Electrostatic Ion Trap
25%
Vibrational Energy Transfer
24%
Au(111) Surface
24%
Concentration of Measure
23%
Flame Synthesis
23%
Cavity Ring-down
23%
Fiber Laser
21%
Methane
21%
Surface Temperature
20%
Excitation Probability
20%
Hydrocarbon Flames
19%
Nanoparticle Formation
18%
Low-pressure Flame
17%
Spectroscopic Measurement
16%
Mass Spectrometry
16%
Molecular Beam
16%
Time-of-flight Measurement
15%
Vibrational Relaxation
15%
Kinetic Model
15%
Dissociation
15%
Laser-induced Fluorescence
14%
Flat Flame
13%
Equivalence Ratio
13%
Flame Reactor
13%
Temperature Measurement
12%
Premixed
12%
Energy Transfer
12%
Nitrogen Oxides
12%
Iron Oxide
12%
Methane-oxygen
12%
Mass Concentration
11%
Engineering
Methane
51%
Nanoparticle
40%
Concentration Profile
28%
Ring Cavity
24%
Quartz Crystal Microbalance
19%
Gas-Phase
18%
Flame Synthesis
17%
Electrostatic Force
17%
One Dimensional
16%
Torr
15%
Equivalence Ratio
10%
Temperature Range
10%
Optical Length
10%
Fiber Laser
10%
Oscillator
8%
Spectral Range
7%
Activation Energy
7%
Chemical Mechanism
7%
Mass Concentration
7%
Laser Diagnostics
7%
Quartz Crystal
6%
Mass Spectrometer
6%
Computer Simulation
6%
Room Temperature
5%
Binding Energy
5%
Limitations
5%
Pyrolysis
5%
Particle Temperature
5%
Two Dimensional
5%
Dimensional Distribution
5%
Renewable Energy
5%
Diffusion Barrier
5%
Pressure Range
5%
Reconsideration
5%
Reflected Shock
5%
Situ Measurement
5%
Dopants
5%
Space Charge
5%
Lifetime Measurement
5%
Flame Front
5%