THz & ASOPS for Academia

Terahertz radiation and asynchronous optical sampling (ASOPS) are powerful technologies advancing a broad range of academic research. Terahertz radiation enables non-invasive probing of low-energy excitations and ultrafast dynamics, while ASOPS delivers rapid, high-resolution measurements without mechanical delay lines. Together, they drive time-domain spectroscopy (TDS) and support breakthroughs across physics, engineering, and materials science, progressing research into quantum materials, spintronics, integrated photonics, and nanoscale imaging. Latest advancements include fiber-coupled high-power terahertz antennas improving signal quality.

False-color terahertz imaging of a maple leaf showing detailed vein structure on a red background.

Terahertz radiation and asynchronous optical sampling (ASOPS) are powerful technologies advancing a broad range of academic research. Terahertz radiation enables non-invasive probing of low-energy excitations and ultrafast dynamics, while ASOPS delivers rapid, high-resolution measurements without mechanical delay lines. Together, they drive time-domain spectroscopy (TDS) and support breakthroughs across physics, engineering, and materials science, progressing research into quantum materials, spintronics, integrated photonics, and nanoscale imaging. Latest advancements include fiber-coupled high-power terahertz antennas improving signal quality.

Product Solutions

Enabling Technologies for Academic THz Applications

Behind every breakthrough lies a set of technologies that make it possible. These innovations tackle critical challenges and turn ambitious ideas into high-performance solutions for our customers.

Reliable Results in Absorptive Media with Menlo’s

High-Power THz and Smart Denoising

How We Tackle Signal Limitations in Complex or Absorptive Samples:

Advance On-Chip THz Innovation with Menlo’s

Broadband Photonic-Compatible Sources

How We Tackle Limited Tools for On-chip and Photonic THz Integration:

Push the Boundaries of THz Research with Menlo’s

Modular and Stable Lab Platforms

How We Tackle Rigid or Unreliable Setups for Developing New THz Methods and Components:

Enabling Technologies for Pump-Probe Spectroscopy

Behind every breakthrough lies a set of technologies that make it possible. These innovations tackle critical challenges and turn ambitious ideas into high-performance solutions for our customers.

Accelerate Acquisition and Enhance Resolution with Menlo’s

ASOPS Systems

How We Tackle Slow Acquisition Times and Limited Scan Range in Conventional TDS:

Protect Antennas and Maximize Uptime with Menlo’s

Gentle-Startup Lasers

How We Tackle Harsh Laser Startup Pulses Reducing Antenna Lifetime:

Product Solutions

Explore our solutions advancing next-generation THz spectroscopy, on-chip photonics, and ultrafast time-resolved measurements.

Project Highlight

Cross-sectional schematic of pump–probe measurements showing acoustic pulse propagation in non-annealed and annealed SrTiO₃ (STO) samples with a metal transducer layer on top.
Cross-sectional illustration of the pump–probe measurement in (a) a non-annealed and (b) an annealed SrTiO₃ (STO) sample.

Application Insights

Fundamentals

Contact Our Expert

Whether you’re working on a research project, developing a new product, or looking to optimize your setup, our experts are here to support you. We provide tailored advice on system integration, laser configuration, and application-specific requirements across a wide range of fields.