论文标题

神经形态计算的物理学

Physics for Neuromorphic Computing

论文作者

Markovic, Danijela, Mizrahi, Alice, Querlioz, Damien, Grollier, Julie

论文摘要

神经形态计算从大脑中汲取灵感,以创建能够进行高度复杂任务的信息处理能源硬件。在本文中,我们认为构建这种新硬件需要重塑电子产品。我们表明,物理和材料科学的研究将是创建人工纳米神经元和突触的关键,以大量的数量将它们连接在一起,以在复杂的系统中组织它们,并有效地对其进行计算。我们描述了一些研究人员如何选择从人工智能中汲取灵感以向这一方向前进,而另一些研究人员则喜欢从神经科学中汲取灵感,而我们强调了通过这两种方法获得的最新惊人结果。最后,我们讨论了神经形态物理学的挑战和观点,其中包括开发算法和手头硬件手头,通过小型玩具系统和建立大规模网络取得了重大进展。

Neuromorphic computing takes inspiration from the brain to create energy efficient hardware for information processing, capable of highly sophisticated tasks. In this article, we make the case that building this new hardware necessitates reinventing electronics. We show that research in physics and material science will be key to create artificial nano-neurons and synapses, to connect them together in huge numbers, to organize them in complex systems, and to compute with them efficiently. We describe how some researchers choose to take inspiration from artificial intelligence to move forward in this direction, whereas others prefer taking inspiration from neuroscience, and we highlight recent striking results obtained with these two approaches. Finally, we discuss the challenges and perspectives in neuromorphic physics, which include developing the algorithms and the hardware hand in hand, making significant advances with small toy systems, as well as building large scale networks.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源