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February 5, 20260 citations

The temperature-dependent in noncollinear SPDC for generating biphotons with single cycles

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HLHaibo LinJWJinbao Wang

Key Points

  • This research aims to understand how temperature affects the generation of single cycle biphotons through noncollinear spontaneous parametric down-conversion.
  • Conducted numerical simulations to study biphoton characteristics.
  • Analyzed phase matching functions dependent on temperature and angle.
  • Evaluated effects of varying angles and temperatures on biphoton properties.
  • Lower temperatures and smaller angles enhance phase matching for biphotons.
  • Increasing temperature leads to decreased count rate and compressed bandwidth of generated biphotons.
  • Biphotons produced remain ultrashort pulses with single cycles under optimal conditions.

Abstract

The influence of temperature on generating single cycle biphotons by noncollinear spontaneous parametric down-conversion (SPDC) in chirped quasi-phase-matching (QPM) periodically poled lithium niobate (PPLN) crystal have been studied in this paper. Numerical simulation shows that characteristics of the biphotons are mainly determined by the phase matching function which is dependent on the angle of the noncollinear SPDC and the temperature of the nonlinear crystal. Moreover, the angle plays a more significant role in noncollinear SPDC. The smaller angle and lower temperature can produce better phase matching effect while the angle and temperature changes within an appropriate range. The count rate of the biphotons will decrease, the bandwidth of biphotons will be compressed and the temporal width is widened for a certain appropriate angle in noncollinear SPDC while temperature is increased. However, as long as the angle and temperature are suitable, the biphotons generated by SPDC in the chirped QPM PPLN crystal are ultrashort pulses with single cycles.

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Cite This Study

Lin et al. (2025) studied this question.

synapsesocial.com/papers/69843451f1d9ada3c1fb252dhttps://doi.org/10.1051/jeos/2025033/pdf
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