Ultra-low loss visible light waveguides for integrated atomic, molecular, and quantum photonics

被引:30
|
作者
Chauhan, Nitesh [1 ]
Wang, Jiawei [1 ]
Bose, Debapam [1 ]
Liu, Kaikai [1 ]
Compton, R. L. [2 ]
Fertig, C. [2 ]
Hoyt, C. W. [2 ]
Blumenthal, Daniel J. [1 ]
机构
[1] Univ Calif Santa Barbara, Dept Elect & Comp Engn, Santa Barbara, CA 93106 USA
[2] Honeywell Aerosp, Plymouth, MN 55441 USA
关键词
LATTICE CLOCK; RESONATORS; CHIP; SPECTROSCOPY; WAVELENGTH;
D O I
10.1364/OE.448938
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Atomic, molecular and optical (AMO) visible light systems are the heart of precision applications including quantum, atomic clocks and precision metrology. As these systems scale in terms of number of lasers, wavelengths, and optical components, their reliability, space occupied, and power consumption will push the limits of using traditional laboratory-scale lasers and optics. Visible light photonic integration is critical to advancing AMO based sciences and applications, yet key performance aspects remain to be addressed, most notably waveguide losses and laser phase noise and stability. Additionally, a visible light integrated solution needs to be wafer-scale CMOS compatible and capable of supporting a wide array of photonic components. While the regime of ultra-low loss has been achieved at telecommunication wavelengths, progress at visible wavelengths has been limited. Here, we report the lowest waveguide losses and highest resonator Qs to date in the visible range, to the best of our knowledge. We report waveguide losses at wavelengths associated with strontium transitions in the 461 nm to 802 nm wavelength range, of 0.01 dB/cm to 0.09 dB/cm and associated intrinsic resonator Q of 60 Million to 9.5 Million, a decrease in loss by factors of 6x to 2x and increase in Q by factors of 10x to 1.5x over this visible wavelength range. Additionally, we measure an absorption limited loss and Q of 0.17 dB/m and 340 million at 674 nm. This level of performance is achieved in a wafer-scale foundry compatible Si3N4 platform with a 20nm thick core and TEOS-PECVD deposited upper cladding oxide, and enables waveguides for different wavelengths to be fabricated on the same wafer with mask-only changes per wavelength. These results represent a significant step forward in waveguide platforms that operate in the visible, opening up a wide range of integrated applications that utilize atoms, ions and molecules including sensing, navigation, metrology and clocks. (C) 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
引用
收藏
页码:6960 / 6969
页数:10
相关论文
共 50 条
  • [41] Integrated visible-light polarization rotators and splitters for atomic quantum systems
    Hattori, Ashton
    Sneh, Tal
    Notaros, Milica
    Corsetti, Sabrina
    Callahan, Patrick T.
    Kharas, Dave
    Mahony, Thomas
    Mcconnell, Robert
    Chiaverini, John
    Notaros, Jelena
    OPTICS LETTERS, 2024, 49 (07) : 1794 - 1797
  • [42] Low-loss polycrystalline silicon waveguides for silicon photonics
    Agarwal, AM
    Liao, L
    Foresi, JS
    Black, MR
    Duan, XM
    Kimerling, LC
    JOURNAL OF APPLIED PHYSICS, 1996, 80 (11) : 6120 - 6123
  • [43] Ultra-low-loss polymer waveguides
    Yeniay, A
    Gao, RY
    Takayama, K
    Gao, RF
    Garito, AF
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2004, 22 (01) : 154 - 158
  • [44] Compact and Broadband Adiabatically Bent Superlattice-Waveguides With Negligible Insertion Loss and Ultra-Low Crosstalk
    Zafar, Humaira
    Paredes, Bruna
    Taha, Inas
    Villegas, Juan E.
    Rasras, Mahmoud
    Pereira, Mauro F.
    IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2023, 29 (06)
  • [45] Templated dewetting for self-assembled ultra-low-loss chalcogenide integrated photonics
    Jean, Philippe
    Douaud, Alexandre
    LaRochelle, Sophie
    Messaddeq, Younes
    Shi, Wei
    OPTICAL MATERIALS EXPRESS, 2021, 11 (11) : 3717 - 3735
  • [46] Polarization Control in Integrated Graphene-Silicon Quantum Photonics Waveguides
    Cammarata, Simone
    Fontana, Andrea
    Kaplan, Ali Emre
    Cornia, Samuele
    Thu Ha Dao
    Lacava, Cosimo
    Demontis, Valeria
    Iadanza, Simone
    Vitali, Valerio
    De Matteis, Fabio
    Pedreschi, Elena
    Magazzu, Guido
    Toncelli, Alessandra
    Spinella, Franco
    Saponara, Sergio
    Gunnella, Roberto
    Rossella, Francesco
    Salamon, Andrea
    Bellani, Vittorio
    MATERIALS, 2022, 15 (24)
  • [47] Ultra-low voltage analog integrated circuits
    Chatterjee, Shouri
    Tsividis, Yannis
    Kinget, Peter
    IEICE TRANSACTIONS ON ELECTRONICS, 2006, E89C (06): : 673 - 680
  • [48] ULTRA-LOW LOSS OPTICAL FIBERS - AN OVERVIEW
    SIGEL, GH
    TRAN, DC
    PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS, 1984, 484 : 2 - 6
  • [49] Ultra-low Loss Silica Core Fiber
    Tamura, Yoshiaki
    2018 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXPOSITION (OFC), 2018,
  • [50] Ultra-low loss Si3N4 waveguides with low nonlinearity and high power handling capability
    Tien, Ming-Chun
    Bauters, Jared F.
    Heck, Martijn J. R.
    Blumenthal, Daniel J.
    Bowers, John E.
    OPTICS EXPRESS, 2010, 18 (23): : 23562 - 23568