论文标题
掺杂PPLN的中红外频谱与无关的双光子产生:一种理论研究
Mid-infrared spectrally-uncorrelated biphotons generation from doped PPLN: a theoretical investigation
论文作者
论文摘要
从理论上讲,我们使用掺杂的LN晶体(包括MGO掺杂的LN,Zno掺杂LN,Zno掺杂LN,in2O3掺杂Znln)和掺杂率从0到7 mol%毫升到7摩尔%的ZNLN来研究自发参数下转化过程中中红外(miR)频谱无关的两光子的制备。相匹配函数的倾斜角度和相应的极点周期是在II类型,I型和类型-0相匹配条件下计算的。我们还计算了掺杂的LN晶体的热性能及其在Hong-Ou-Mandel干扰中的性能。发现掺杂率对群速匹配(GVM)波长具有重大影响。尤其是,共掺杂的Inznln晶体的GVM2波长具有678.7 nm的可调范围,比通过调节温度的常规方法实现的可调范围宽大得多。可以得出结论,可以将掺杂比用作操纵双爆态的自由度。频谱不相关的两光子可用于制备纯单光子源和纠缠光子源,该光子源可能具有有希望的量子增强感测,成像和在miR范围内通信的应用。
We theoretically investigate the preparation of mid-infrared (MIR) spectrally-uncorrelated biphotons from a spontaneous parametric down-conversion process using doped LN crystals, including MgO doped LN, ZnO doped LN, and In2O3 doped ZnLN with doping ratio from 0 to 7 mol%. The tilt angle of the phase-matching function and the corresponding poling period are calculated under type-II, type-I, and type-0 phase-matching conditions. We also calculate the thermal properties of the doped LN crystals and their performance in Hong-Ou-Mandel interference. It is found that the doping ratio has a substantial impact on the group-velocity-matching (GVM) wavelengths. Especially, the GVM2 wavelength of co-doped InZnLN crystal has a tunable range of 678.7 nm, which is much broader than the tunable range of less than 100 nm achieved by the conventional method of adjusting the temperature. It can be concluded that the doping ratio can be utilized as a degree of freedom to manipulate the biphoton state. The spectrally uncorrelated biphotons can be used to prepare pure single-photon source and entangled photon source, which may have promising applications for quantum-enhanced sensing, imaging, and communications at the MIR range.