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June 3, 2026Review of Scientific Instruments0 citations

Multi-tau pulsed illumination differential dynamic microscopy with 80 μ s resolution

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ESEmmanuel SchaubMWMartinus H. V. Werts

Key Points

  • This research aims to enhance the time resolution of differential dynamic microscopy (DDM) for studying microscale dynamics.
  • Introduced multi-tau pulsed illumination differential dynamic microscopy (MTPI-DDM) for improved measurements.
  • Employed a monochrome digital camera and a single pulsed LED in a geometric progression timing scheme.
  • Validated the method by measuring polystyrene nanoparticle diffusion in water.
  • Achieved a time resolution of 80 μs limited by camera electronics.
  • Extended the shortest measurable time lags by nearly 100 times compared to continuous-wave DDM.
  • Increased DDM signal amplitudes by reducing motion blur.

Abstract

Differential dynamic microscopy (DDM) is a digital video-microscopy technique for quantitative measurements of the microscale dynamics in soft condensed matter systems. Here, multi-tau pulsed illumination DDM (MTPI-DDM) is introduced as a method for significantly enhancing the time resolution of DDM. The technique employs simple, low-cost instrumentation comprising a single monochrome digital camera and a single pulsed LED. A timing sequence, following a geometric progression of time lags, is used to generate a "multi-tau" scheme, providing high sampling density at short timescales where dynamics are fastest. In the current implementation, a time resolution of 80 μs is achieved, limited by the dead time of the camera electronics. The validation of MTPI-DDM was performed by measuring the diffusion of 147 nm polystyrene nanoparticles in water. Compared to conventional continuous-wave (CW) DDM, the pulsed approach extends the range of the shortest measurable time lags by nearly two orders of magnitude and enhances DDM signal amplitudes by eliminating motion blur.

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Cite This Study

Schaub et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc6f7dee9eb8c0dce7c4bhttps://doi.org/10.1063/5.0319489
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