Triana-Arango Freiman, Ramírez-Alarcón Roberto, Ramos-Ortiz Gabriel
Centro de Investigaciones en Óptica A. C., A. P. 1-948, 37000 León, Guanajuato, México.
J Phys Chem A. 2024 Mar 21;128(11):2210-2219. doi: 10.1021/acs.jpca.3c06863. Epub 2024 Mar 6.
Recently different experimental schemes have been proposed to study the elusive phenomenon of entangled two-photon absorption (ETPA) in nonlinear materials. The attempts to detect ETPA using transmission-based schemes have led to results whose validity is currently under debate because the ETPA signal can be corrupted or emulated by artifacts associated with linear optical losses. The present work addresses the issue of linear losses and the corresponding artifacts in transmission-based ETPA experiments through a new approach that exploits the properties of a Hong-Ou-Mandel (HOM) interferogram. Here, we analyze solutions of rhodamine B (RhB), commonly used as a model of a nonlinear medium in ETPA studies. Then, by using the HOM interferometer as a sensing device, we first demonstrate the equivalence of the standard transmission vs pump power ETPA experiments, presented in many reports, with our novel approach of transmission vs two-photon temporal delay. Second, a detailed study of the effects of optical losses, unrelated to ETPA, over the HOM interferogram is carried out by: (1) characterizing RhB in solutions prepared with different solvents and (2) considering scattering losses introduced by silica nanoparticles used as a controlled linear loss mechanism. Our results clearly expose the deleterious effects of linear optical losses over the ETPA signal when standard transmission experiments are employed and show how, by using the HOM interferogram as a sensing device, it is possible to detect the presence of such losses. Finally, once we showed that the HOM interferogram discriminates properly linear losses, our study also reveals that under the specific experimental conditions considered here, which are the same as those employed in many reported works, the ETPA was not unequivocally detected.
最近,人们提出了不同的实验方案来研究非线性材料中难以捉摸的双光子纠缠吸收(ETPA)现象。使用基于透射的方案检测ETPA的尝试所得到的结果,其有效性目前仍存在争议,因为ETPA信号可能会被与线性光学损耗相关的伪像所破坏或模拟。本工作通过一种利用Hong-Ou-Mandel(HOM)干涉图特性的新方法,解决了基于透射的ETPA实验中的线性损耗及相应伪像问题。在这里,我们分析了罗丹明B(RhB)的溶液,它通常被用作ETPA研究中非线性介质的模型。然后,通过将HOM干涉仪用作传感装置,我们首先证明了许多报告中呈现的标准透射与泵浦功率ETPA实验,与我们新颖的透射与双光子时间延迟方法是等效的。其次,通过以下方式对与ETPA无关的光学损耗对HOM干涉图的影响进行了详细研究:(1)对用不同溶剂制备的溶液中的RhB进行表征;(2)考虑用作受控线性损耗机制的二氧化硅纳米颗粒引入的散射损耗。我们的结果清楚地揭示了在采用标准透射实验时线性光学损耗对ETPA信号的有害影响,并展示了如何通过将HOM干涉图用作传感装置来检测此类损耗的存在。最后,一旦我们表明HOM干涉图能够正确区分线性损耗,我们的研究还揭示,在此处考虑的特定实验条件下,即与许多已报道工作中所采用的条件相同,ETPA并未得到明确检测。