Terahertz Time Domain Spectroscopy

Terahertz time-domain spectroscopy (THz-TDS) is a technique that measures how materials interact with electromagnetic radiation in the terahertz frequency range, providing both spectral and temporal information. An ultrashort laser pulse generates a terahertz pulse, which passes through or reflects from a sample; electro-optic or photoconductive detection records its electric field as a function of time, and Fourier transformation yields the material’s amplitude and phase response. In engineering, THz-TDS characterizes semiconductors, polymers, composites, coatings, and other materials without requiring electrical contacts. Its ability to reveal thickness, conductivity, defects, and layer structure supports nondestructive testing, quality control, and advanced materials research.

Terahertz Time Domain Spectroscopy - Related Videos

Research

JoVE Journal - Engineering

Terahertz Microfluidic Sensing Using a Parallel-plate Waveguide Sensor

0 Views •

Cited by 3 •

2012

The procedure for implementing a refractive index sensor for terahertz frequencies based on a grooved parallel-plate waveguide geometry is described here. The method yields a measurement of the refractive index of a small volume of liquid through monitoring of the shift in the resonant frequency of the waveguide...

Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters

0 Views •

Cited by 9 •

2013

We describe methods for the design, fabrication, and experimental characterization of plasmonic photoconductive emitters, which offer two orders of magnitude higher terahertz power levels compared to conventional photoconductive emitters.

Education

JoVE Core - Electrical Engineering

Linear Approximation in Time Domain

0 Views •

2024

Nonlinear systems often require sophisticated approaches for accurate modeling and analysis, with state-space representation being particularly effective. This method is especially useful for systems where variables and parameters vary with time or operating conditions, such as in a simple pendulum or a translational mechanical system with nonlinear springs. For a simple pendulum with a mass evenly distributed along its length and the center of mass located at half the pendulum's length, the...

Time-Domain Interpretation of PD Control

0 Views •

2024

Proportional-Derivative (PD) control is a widely used control method in various engineering systems to enhance stability and performance. In a system with only proportional control, common issues include high maximum overshoot and oscillation, observed in both the error signal and its rate of change. This behavior can be divided into three distinct phases: initial overshoot, subsequent undershoot, and gradual stabilization. Consider the example of control of motor torque. Initially, a positive...

Time and frequency -Domain Interpretation of PI Control

0 Views •

2024

Proportional-Integral (PI) controllers are essential in many control systems to improve stability and performance. They are commonly used in everyday devices like thermostats to enhance system damping and reduce steady-state error. When the zero in the controller's transfer function is optimally placed, the system benefits significantly in terms of stability and accuracy. Acting as a low-pass filter, the PI controller slows the system's response and extends settling times. This requires careful...

View All Results

FAQs

Related Topics