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Compact system for high-speed velocimetry using heterodyne techniques

Review of Scientific Instruments · 2006 · Vol. 77(8)
Oliver T. StrandD. R. GoosmanCarolyn MartinezTony L. WhitworthWilliam Kuhlow

Abstract

We have built a high-speed velocimeter that has proven to be compact, simple to operate, and fairly inexpensive. This diagnostic is assembled using off-the-shelf components developed for the telecommunications industry. The main components are fiber lasers, high-bandwidth high-sample-rate digitizers, and fiber optic circulators. The laser is a 2W cw fiber laser operating at 1550nm. The digitizers have 8GHz bandwidth and can digitize four channels simultaneously at 20GS∕s. The maximum velocity of this system is ∼5000m∕s and is limited by the bandwidth of the electrical components. For most applications, the recorded beat frequency is analyzed using Fourier transform methods, which determine the time response of the final velocity time history. Using the Fourier transform method of analysis allows multiple velocities to be observed simultaneously. We have obtained high-quality data on many experiments such as explosively driven surfaces and gas gun assemblies.

Atomic and Subatomic Physics ResearchMechanical and Optical ResonatorsAdvanced Fiber Laser TechnologiesOpticsBandwidth (computing)LaserFourier transformMaterials scienceVelocimetryOptical fiberComputer scienceOptical circulatorHeterodyne detection

Funding

  • U.S. Department of Energy
  • Vedecká Grantová Agentúra MŠVVaŠ SR a SAV
  • Lawrence Livermore National Laboratory
Citations
840
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4
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References
Laser interferometer for measuring high velocities of any reflecting surface
Journal of Applied Physics · 1972 · 1,673 citations
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