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Asymmetric liquid-core cylindrical lens used to measure liquid diffusion coefficient. | LitMetric

AI Article Synopsis

  • The study presents a new design for an asymmetric liquid-core cylindrical lens (ALCL) that accurately measures the binary liquid diffusion coefficient (D) and the refractive index (RI) of the liquid within it.
  • The ALCL significantly reduces spherical aberration from approximately 300 μm in symmetric lenses to less than 5 μm, achieving a measurement accuracy of RI better than 0.0002.
  • Using the ALCL, the diffusion coefficient for triethylene glycol in water at 25°C was determined to be D=0.7515×10⁻⁵ cm²/s, closely matching existing literature values, highlighting its effectiveness for precise measurement and observation of diffusion processes.

Article Abstract

We design and fabricate an asymmetric liquid-core cylindrical lens (ALCL), which is used to measure the binary liquid diffusion coefficient (D). Acting as both diffusion cell and key imaging element, ALCL is of the function to measure the refractive index (RI) of liquid filled in its core in the way of spatial resolution. Comparing the ALCL with a symmetric liquid-core cylindrical lens (SLCL), the spherical aberration is reduced from about 300 μm (SLCL) to less than 5 μm (ALCL) when the RI of filled liquid is near 1.333, while the measurement accuracy of the RI of the ALCL is superior to 0.0002, which is much better than that of the SLCL. Equipped with the ALCL, the D value of triethylene glycol diffusing in water is measured at 25°C. The result is D=0.7515×10⁻⁵ cm²/s, a value very close to the literature value. The rational design of ALCL gives the optical method for measuring the D value good measurement precision and direct observation of the diffusive process as well as a simple experimental instrument.

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Source
http://dx.doi.org/10.1364/AO.55.002011DOI Listing

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