Advanced Research
At the extremes of science, research often goes beyond “scientific discovery” to become the discovery of new sciences.
In laboratories around the world, Agilent instrumentation has become an integral part of advanced experimental systems, whether for system control or experiment observation.

Applications include:
- Astrophysics
- Nuclear physics
- Particle physics
- Plasma physics
and other high-energy physics advanced research applications.
Agilent high-speed instruments are used in two major areas:
- Real-time control and measurement
- Single-shot, or event-based measurements
Expanding knowledge on phenomena at galactic or nanometer scale, confidence in results is strengthened by dependable measurement solutions that provide exceptional speed and measurement fidelity. Agilent provides the extreme speed and precision needed for system monitoring and control, and for capturing data from the events at speeds that exceed the interactions of the experiments themselves.
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1-8 of 8
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A New Measurement of the Half-Life of the Superallowed -decay of 26mAl
This short article reprint was prepared by Rebecca Scott from the University of Melbourne. It discusses the use of Agilent Acqiris digitizers for digital signal processing in nuclear physics.
Article 2008-05-20 |
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Acqiris Digitizers Become an Integral Part, in the Quest for Nuclear Waste
Researchers at CERN have been investigating transmutation processes involving neutron capture for the safe disposal of nuclear waste.
Article 2008-06-13 |
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Acqiris Gigahertz FADCs Help Astronomers Probe Deep Space Using Gamma Rays
Article 2007-10-09 |
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Broadband FFT Spectrometer for Radio and Millimeter Astronomy Article Reprint
The core architecture, tests in the lab and first results of a Fast Fourier Transform spectrometer are described in this document
Article 2008-04-02 |
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Germany’s Renowned Max Plank Institute Chooses Advanced Acqiris Data Acquisition
Article reprint from the June Focus Newsletter by Greg Tate.
Article 2007-10-10 |
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Measurement of the Real Time Fill-Pattern at the Australian Synchrotron
This article describes the development, commissioning and operation of a Fill-Pattern Monitor (FPM) for the Australian Synchrotron that measures the real-time intensity distribution of the electron bunches in the storage ring.
Article 2008-03-05 |
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NASA Chooses Acqiris Products from Agilent - Customer Article
The National Aeronautics & Space Administration (NASA selected Agilent Acqiris digitizers for key data acquisition requirements in advanced propulsion research.
Article 2008-05-09 |
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T&M Environment Photoionization Aerosol Mass Spectrometer Customer Article
A new method, photoionization aerosol mass spectrometry (PIAMS), is described for real-time analysis of organic components in airborne particles below 300 nm in diameter.
Article 2008-03-07 |
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