Non-contact printing of optical waveguides using capillary bridges

被引:16
|
作者
Theiler, Pius M. [1 ,2 ]
Lutolf, Fabian [1 ]
Ferrini, Rolando [1 ]
机构
[1] CSEM Muttenz, Tramstr 99, CH-4132 Muttenz, Switzerland
[2] Swiss Fed Inst Technol, Nanotechnol Grp, G314,Saumerstr 4, CH-8803 Ruschlikon, Switzerland
来源
OPTICS EXPRESS | 2018年 / 26卷 / 09期
关键词
CONTACT-ANGLE; INKJET; LIQUID; STABILITY; LINES;
D O I
10.1364/OE.26.011934
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Non-contact printing methods such as inkjet, electro hydrodynamic, and aerosol printing have attracted attention for their precise deposition of functional materials that are needed in printed electronics, optoelectronics, photonics, biotechnology, and microfluidics. In this article, we demonstrate printing of tapered optical waveguides with losses of 0.61 +/- 0.26 dB/cm, with the best performing structure achieving 0.19 dB/cm. Such continuous features are indispensable for successfully printing functional patterns, but they are often corrupted by capillary forces. The proposed inkjet printing method uses these forces to align liquid bridges into continuous features, enabling the printing of smooth lines on substrates with arbitrary contact angles. (C) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:11934 / 11939
页数:6
相关论文
共 50 条
  • [31] Non-contact photoacoustic imaging using a fiber based interferometer with optical amplification
    Hochreiner, Armin
    Bauer-Marschallinger, Johannes
    Burgholzer, Peter
    Jakoby, Bernhard
    Berer, Thomas
    BIOMEDICAL OPTICS EXPRESS, 2013, 4 (11): : 2322 - 2331
  • [32] Non-contact cardiac monitoring from carotid artery using optical vibrocardiography
    Scalise, Lorenzo
    Morbiducci, Umberto
    MEDICAL ENGINEERING & PHYSICS, 2008, 30 (04) : 490 - 497
  • [33] Non-contact Detection of Nano-scale Structures Using Optical Nanofiber
    Maruya, Hironaga
    Oe, Yasuko
    Takashima, Hideaki
    Hattori, Azusa N.
    Tanaka, Hidekazu
    Takeuchi, Shigeki
    2017 CONFERENCE ON LASERS AND ELECTRO-OPTICS EUROPE & EUROPEAN QUANTUM ELECTRONICS CONFERENCE (CLEO/EUROPE-EQEC), 2017,
  • [34] Non-Contact Liquid Level Measurement Using Optical Interferometry and Neural Networks
    Manuel Ramirez-Cortes, Juan
    Rodriguez-Montero, Ponciano
    Gomez-Gil, Pilar
    Carlos Sanchez-Diaz, Juan
    IEEE INSTRUMENTATION & MEASUREMENT MAGAZINE, 2021, 24 (05) : 20 - 27
  • [35] Development of a non-contact precision measurement technique using optical frequency combs
    Onoe, Taro
    Takahashi, Satoru
    Takamasu, Kiyoshi
    Matsumoto, Hirokazu
    EMERGING TECHNOLOGY IN PRECISION ENGINEERING XIV, 2012, 523-524 : 877 - 882
  • [36] Non-contact sub-nanometer optical repositioning using femtosecond lasers
    Bellouard, Yves
    OPTICS EXPRESS, 2015, 23 (22): : 29258 - 29267
  • [37] Multimodal non-contact photoacoustic imaging and optical coherence tomography using all optical detection
    Leiss-Holzinger, Elisabeth
    Bauer-Marschallinger, Johannes
    Berer, Thomas
    MULTIMODAL BIOMEDICAL IMAGING XII, 2017, 10057
  • [38] A review of non-contact micro- and nano-printing technologies
    Ru, Changhai
    Luo, Jun
    Xie, Shaorong
    Sun, Yu
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2014, 24 (05)
  • [39] CNT Heater Design of the Paper Non-Contact Region for Printing Fuser
    Jeong, Hee-Moon
    Kuk, Keon
    Baek, Oh Hyun
    JOURNAL OF IMAGING SCIENCE AND TECHNOLOGY, 2014, 58 (01)
  • [40] Electrostrictive optical resonators for non-contact displacement measurement
    Rubino, Edoardo
    Ioppolo, Tindaro
    APPLIED OPTICS, 2017, 56 (02) : 229 - 233