Skip to main navigation
Skip to search
Skip to main content
Arizona State University Home
Search content at Arizona State University
Home
Profiles
Departments and Centers
Scholarly Works
Activities
Equipment
Grants
Datasets
Prizes
Time-domain methods for diffusive transport in soft matter
John Fricks
, Lingxing Yao
, Timothy C. Elston
, M. Gregory Forest
Research output
:
Contribution to journal
›
Article
›
peer-review
55
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Time-domain methods for diffusive transport in soft matter'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Soft Matter
100%
Diffusive Transport
100%
Time-domain Method
100%
Generalized Langevin Equation
100%
Statistical Correlation
25%
Particle Tracking
25%
Microbeads
25%
Series Analysis
25%
Experimental Protocol
25%
Micron-scale
25%
Frequency Space
25%
Inverse Problem
25%
Stochastic Processes
25%
Maximum Likelihood Estimator
25%
Position Data
25%
Diffusion Properties
25%
Storage Modulus
25%
Loss Modulus
25%
Kalman Filter
25%
Viscoelastic Modulus
25%
Frequency-dependent Loss
25%
Mean Square Displacement
25%
Discrete Formulation
25%
Brownian Particle
25%
Drag Law
25%
Direct Modeling
25%
Particle Paths
25%
Ornstein-Uhlenbeck Process
25%
Path Correlation
25%
Memory Kernel
25%
Passive Microrheology
25%
Viscoelastic Medium
25%
Exponential Kernel
25%
Exponential Series
25%
M-mode
25%
Displacement Statistic
25%
Physics
Soft Matter Physics
100%
Langevin Equation
100%
Time Domain Processing
100%
Transportation
100%
Time Series Analysis
25%
Stochastic Process
25%
Microrheology
25%
Statistical Correlation
25%
Mathematics
Time Domain
100%
Langevin Equation
100%
Experimental Data
25%
Stochastic Process
25%
Maximum Likelihood Estimator
25%
Single Mode
25%
Kalman Filtering
25%
Ornstein Uhlenbeck Process
25%
Brownian Particle
25%
Time Series Analysis
25%