Ultralow-power all-optical RAM based on nanocavities

被引:0
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作者
Kengo Nozaki
Akihiko Shinya
Shinji Matsuo
Yasumasa Suzaki
Toru Segawa
Tomonari Sato
Yoshihiro Kawaguchi
Ryo Takahashi
Masaya Notomi
机构
[1] NTT Basic Research Laboratories,
[2] NTT Corp. 3-1,undefined
[3] Morinosato Wakamiya Atsugi,undefined
[4] NTT Photonics Laboratories,undefined
[5] NTT Corp. 3-1,undefined
[6] Morinosato Wakamiya Atsugi,undefined
来源
Nature Photonics | 2012年 / 6卷
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摘要
Optical random-access memory (o-RAM) has been regarded as one of the most difficult challenges in terms of replacing its various functionalities in electronic circuitry with their photonic counterparts. Nevertheless, it constitutes a key device in optical routing and processing. Here, we demonstrate that photonic crystal nanocavities with an ultrasmall buried heterostructure design can solve most of the problems encountered in previous o-RAMs. By taking advantage of the strong confinement of photons and carriers and allowing heat to escape efficiently, we have realized all-optical RAMs with a power consumption of only 30 nW, which is more than 300 times lower than the previous record, and have achieved continuous operation. We have also demonstrated their feasibility in multibit integration. This paves the way for constructing a low-power large-scale o-RAM system that can handle high-bit-rate optical signals.
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页码:248 / 252
页数:4
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