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  • Exploiting resonant quantum electron tunnelling empowered by an optically resonant, doubly periodic plasmonic nanowire metasurface, a biosensor with no external light source is demonstrated, boosting the integrability of the biosensor.

    • Jihye Lee
    • Yina Wu
    • Hatice Altug
    ArticleOpen Access
  • A platform based on quantum-emitter-embedded metasurfaces with a microcavity that can be tuned by a micro-electromechanical system is demonstrated, enabling dynamic photon emission with narrow bandwidth, ångström-level wavelength tunability and polarization switching.

    • Yinhui Kan
    • Paul C. V. Thrane
    • Sergey I. Bozhevolnyi
    Article
  • Attosecond transient reflection spectroscopy is used to experimentally observe the attosecond electron dynamics of a crystalline diamond, showing that virtual interband transitions affect the timing and adiabaticity of the crystal response and thus providing insights for the development of information processing and petahertz electronics.

    • Gian Luca Dolso
    • Shunsuke A. Sato
    • Matteo Lucchini
    Article
  • Combining attosecond metrology and soliton dynamics in hollow-core fibres, the generation of attosecond laser pulses from the deep-ultraviolet to the near-infrared regime and the measurement of attosecond solitons with 350-as durations at optical wavelengths are demonstrated, providing an efficient route to generate intense isolated attosecond pulses complementary to those based on high-harmonic generation in gases.

    • Amelie M. Heinzerling
    • Francesco Tani
    • Nicholas Karpowicz
    ArticleOpen Access
  • The generation of spatiotemporal optical vortices in the extreme-ultraviolet regime is demonstrated via high harmonic generation. Topologically coupled at the nanometre and attosecond domains, these light beams are attractive for exploring electronic dynamics in magnetic materials, chiral media and nanostructures.

    • Rodrigo Martín-Hernández
    • Guan Gui
    • Carlos Hernández-García
    Article
  • Self-injection locking of an on-chip laser to a milimetre-scale vacuum-gap Fabry–Pérot cavity is demonstrated, with a phase noise of –97 dBc Hz–1 at a 10-kHz offset frequency and a fractional frequency stability of 5 × 10−13 at 10 ms, enabling next-generation high-performance integrated systems.

    • Haotian Cheng
    • Chao Xiang
    • Peter T. Rakich
    ArticleOpen Access
  • A turn-key-operable hybrid integrated Pockels laser based on an external distributed Bragg waveguide grating reflector fabricated in a wafer-scale thin-film lithium niobate on insulator platform is demonstrated, with a tuning efficiency of over 550 MHz V–1, tuning rates reaching the exahertz per second, and a high output power of 15 mW.

    • Anat Siddharth
    • Simone Bianconi
    • Tobias J. Kippenberg
    Article
  • An ultra-compact, ultra-wide-bandwidth in-phase/quadrature modulator on a silicon chip is demonstrated, enabling coherent transmission for symbol rates up to 180 Gbaud and a net bit rate surpassing 1 Tb s−1 over an 80 km span, with modulation energy consumption as low as 10.4 fJ bit−1, and promising enhanced performance and scalability for future networking infrastructures.

    • Alireza Geravand
    • Zibo Zheng
    • Wei Shi
    Article
  • Combining advanced photonics with reconfigurable liquid crystalline self-assembled structures allows control of a liquid crystal’s microlaser emission by nanosecond optical pulses and the ability to switch off the laser emission from the liquid crystal using the resonant stimulated-emission depletion process, providing a design for a new class of photonic integrated devices.

    • Mahendran Vellaichamy
    • Uroš Jagodič
    • Igor Muševič
    ArticleOpen Access
  • A quantum kernel estimation by which feature data points are evaluated through the unitary evolution of two-boson Fock states is experimentally demonstrated on a photonic integrated processor. This model provides enhanced accuracy with respect to commonly used classical methods for several classification tasks.

    • Zhenghao Yin
    • Iris Agresti
    • Philip Walther
    ArticleOpen Access