Multimodal Optically Nonlinear Nanoparticles Exhibiting Simultaneous Higher Harmonics Generation and Upconversion Luminescence for Anticounterfeiting and 8‐bit Optical Coding

Author:

Runowski Marcin12ORCID,Woźny Przemysław1ORCID,Martín Inocencio R.2ORCID,Soler‐Carracedo Kevin12ORCID,Zheng Teng3ORCID,Hemmerich Hanoch2,Rivera‐López Fernando4,Moszczyński Jan1,Kulpiński Piotr5ORCID,Feldmann Sascha6

Affiliation:

1. Faculty of Chemistry Adam Mickiewicz University Uniwersytetu Poznańskiego 8 Poznań 61‐614 Poland

2. Departamento de Física IUdEA IMN and MALTA Consolider Team Universidad de La Laguna San Cristóbal de La Laguna Santa Cruz de Tenerife E‐38200 Spain

3. School of Information and Electrical Engineering Hangzhou City University Hangzhou 310015 China

4. Departamento de Ingeniería Industrial Escuela Superior de Ingeniería y Tecnología Universidad de La Laguna San Cristóbal de La Laguna Santa Cruz de Tenerife E‐38200 Spain

5. Faculty of Material Technologies and Textile Design Department of Mechanical Engineering Informatics and Chemistry of Polymer Materials Lódź University of Technology Żeromskiego 116 Lódź 90‐924 Poland

6. Rowland Institute Harvard University 100 Edwin H. Land Boulevard Cambridge MA 02142 USA

Abstract

AbstractNonlinear optical materials are essential in areas such as nanophotonics, optical information processing, and biomedical imaging. However, nanomaterials employed for these diverse applications to date are efficient only for one type of nonlinear optical activity. Herein, the first multimodal nonlinear optically active class of nanomaterials based on lanthanide‐doped lithium niobate nanoparticles, which simultaneously exhibit unprecedentedly efficient second and third harmonic generation, as well as up‐conversion photoluminescence, is reported. These dielectric nanoparticles retain their high nonlinear optical conversion efficiency both as powder and as aqueous colloidal solution. The high stability also allows for the fabrication of optically active biocompatible micron‐sized fibers and polymer‐based 3D‐printable objects, as well as for fingerprint detection. Finally, the first 8‐bit coding platform purely based on multimodal nonlinear optical activity originating from different parametric and nonparametric processes is demonstrated, showcasing the technological potential of these materials for both anti‐counterfeiting and advanced optical information processing.

Funder

Narodowym Centrum Nauki

Agencia Estatal de Investigación

Ministerio de Ciencia e Innovación

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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