Horoshko Dmitri B, Kolobov Mikhail I, Parigi Valentina, Treps Nicolas
Opt Lett. 2024 Aug 1;49(15):4078-4081. doi: 10.1364/OL.528280.
Frequency-degenerate pulsed type-I parametric downconversion is a widely used source of squeezed light for numerous quantum optical applications. However, this source is typically spectrally multimode, and the generated squeezing is distributed between many spectral modes with a limited degree of squeezing per mode. We show that in a nonlinear crystal, where the condition of complete group velocity matching (GVM) for the pump and the signal is satisfied, the number of generated modes may be as low as two or three modes. We illustrate the general theory with the example of the MgO-doped lithium niobate crystal pumped at 775 nm and generating squeezed light at 1.55 µm. Our model includes the derivation of the degree of squeezing from the properties of the pump and the crystal and shows that 12 dB of squeezing can be obtained in a periodically poled crystal at a length of 80 mm.
频率简并脉冲 I 型参量下转换是一种广泛应用于众多量子光学应用的压缩光光源。然而,这种光源通常在光谱上是多模的,并且所产生的压缩分布在许多光谱模式之间,每个模式的压缩程度有限。我们表明,在满足泵浦光和信号光的完全群速度匹配(GVM)条件的非线性晶体中,产生的模式数量可能低至两三个模式。我们以在 775 nm 泵浦并在 1.55 µm 产生压缩光的掺氧化镁铌酸锂晶体为例来说明这一一般理论。我们的模型包括从泵浦光和晶体的特性推导压缩程度,并表明在长度为 80 mm 的周期极化晶体中可以获得 12 dB 的压缩。