Türkçe

2D photoelectric neuron array can achieve broadband and low loss optical nonlinearity accessible to ambient light

376
2024-03-20 15:47:32
Çeviriyi gör

Light can calculate functions during propagation and interaction with structured materials, with fast speed and low energy consumption. The use of all optical neural networks for general computing requires an optical activation layer with nonlinear dependence on the input. However, existing optical nonlinear materials either have slow speeds or very weak nonlinearity at the level of natural light intensity captured by cameras. Therefore, designing and developing new optical activation functions is crucial for achieving optical neural networks that utilize ambient light for computation.

In a paper published in Nature Communications, a research team led by Professor Duan Xiangfeng and Professor Aydogan Ozcan from the University of California, Los Angeles reported a new strategy using a photonic neuron array to achieve strong optical nonlinearity for broadband incoherent light at low light intensity.

Their devices are heterogeneous and integrated with two-dimensional transparent phototransistors and liquid crystal modulators. Under weak light irradiation, TPT has high electrical resistance, and most of the voltage drop occurs on TPT. LC is not disturbed and maintains transparency. However, at high input optical power, TPT becomes conductive, causing most of the voltage to drop on the LC layer, thereby cutting off optical transmission.

In their experimental demonstration, the designed photoelectric neuron allowed for nonlinear modulation of its own amplitude by spatially and temporally incoherent light in visible light wavelengths, with photon loss of only~20%. They created a 100x100 array of photoelectric neurons and exhibited strong nonlinear behavior under laser and white light irradiation.

The nonlinear photoelectric array is further integrated as part of the mobile phone based imaging system, used for intelligent reduction of glare, selective blocking of strong glare, and almost no attenuation of objects with weaker intensity in the imaging field of view.

Device modeling shows that the optical intensity threshold is very low, only 56 μ W/cm2 produces significant nonlinear response for optimized devices, and the energy consumption per photon activation is as low as 69 fJ.

This photoelectric neuron array can perform nonlinear self amplitude modulation on spatially incoherent light, with characteristics such as low light intensity threshold, strong nonlinear contrast, wide spectral response, fast speed, and low photon loss. For image processing and visual computing systems that do not rely on strong laser beams, this performance is very ideal.

In addition to intelligent glare reduction, the cascaded integration of photoelectric neuron arrays and linear diffraction optical processors can be used to construct nonlinear optical networks, which may be widely used in computational imaging and sensing, and also open the door to the design of new nonlinear optical processors that use ambient light.

Source: Laser Net

İlgili öneriler
  • Abnormal relativistic emission generated by strong interaction between laser and plasma reflector

    The interaction between strong laser pulses and plasma mirrors has been a focus of recent physical research, as they generate interesting effects. Experiments have shown that these interactions can generate a nonlinear physical process called high-order harmonics, characterized by emitting extreme ultraviolet radiation and brief flashes of laser light.Researchers from the Czech Extreme Light Infra...

    2023-12-04
    Çeviriyi gör
  • Widely tunable terahertz laser enhances photo induced superconductivity in K3C60

    Researchers at the Max Planck Institute for Material Structure and Dynamics (MPSD) in Hamburg, Germany, have long been exploring the effect of using custom laser drivers to manipulate the properties of quantum materials to deviate from equilibrium states.One of the most eye-catching demonstrations of these physics is unconventional superconductors, where enhanced electron coherence and super trans...

    2023-10-13
    Çeviriyi gör
  • Tiny yet Powerful: How Lasers on Chips Change the Game Rules of Photonics

    Chip level ultrafast mode-locked laser based on nanophotonic lithium niobate.Researchers have created a compact mode-locked laser integrated into a nanophotonic platform, capable of generating high-power and ultrafast optical pulses. The breakthrough in miniaturization of MLL technology can significantly expand the application of photonics.Innovation in mode-locked laser technologyTo improve the t...

    2023-12-27
    Çeviriyi gör
  • New and Strongest Laser Born in the United States

    The ZEUS laser at the University of Michigan recently achieved a breakthrough of doubling the peak power of the strongest laser in the United States through its first 2 quadrillion watt experiment. Although this instantaneous power only lasts for 25 attosecond (one billionth of a second), it exceeds the total power of the global power grid by more than a hundred times.Karl Krushelnick, director of...

    05-28
    Çeviriyi gör
  • The new Casiris H6 4K UST tricolor laser projector is about to be launched through Indiegogo

    Casir is about to launch the H6 4K UST tricolor laser projector through Indiegogo. The new laser projector has a brightness of up to 3000 ANSI lumens and a BT.2020 color gamut coverage of 110%. It is an ultra short focus projector that runs on Android TV.The Casiris H6 4K UST tricolor laser projector is a brighter and more accurate version of the Casiris A6. It also has greater image projection ca...

    2023-09-18
    Çeviriyi gör