24小时热门版块排行榜    

查看: 211  |  回复: 0
当前主题已经存档。

chl5063

木虫 (著名写手)

流浪在小木虫

[交流] 科学家开创出新的纳米科技领域Researchers create new nanotechnology field

A University of Alberta research team has combined two fields of study in nanotechnology to create a third field that the researchers believe will lead to revolutionary advances in computer electronics, among many other areas.

Dr. Abdulhakem Elezzabi and his colleagues have applied plasmonics principles to spintronics technology and created a novel way to control the quantum state of an electron's spin.

The new technology, which the researchers call spinplasmonics, may be used to create incredibly efficient electron spin-based photonic devices, which in turn may be used to build, for example, computers with extraordinary capacities.

"We've only just begun to scratch the surface of this field, but we believe we have the physics sorted out and one day this technology will be used to develop very fast, very small electronics that have a very low power consumption," said Elezzabi, the Canada Research Chair in Ultrafast Photonics and Nano-Optics and an electrical and computer engineering professor at the U of A.

Elezzabi's work addresses a number of challenges that, to this point, have hindered further advancement in computer electronics, such as in the creation of smaller devices. One such challenge is that as traditional, silicon-based semiconductor devices approach the nanoscale, the laws of quantum physics take control over their performance (specifically the flow of charges—i.e. electrons) and render them inoperable.

Researchers in the field of spintronics have tried to address this problem by building metal-based devices that harness the magnetic quantum properties of the spin of electrons. Although the spintronics field is barely a dozen years-old, some devices that incorporate spintronics technology are already on the market.

The field of plasmonics, which is even younger than spintronics, involves the transfer of light electromagnetic energy into a tiny volume, thus creating intense electric fields—a phenomenon that has many scientists rethinking the laws of electromagnetics on a nanoscale. The plasmonics field has many wide-ranging applications, from guiding light through metal wires, to bio-sensing, to making objects invisible to the eye.

One of the main challenges for plasmonics researchers is finding a way to propagate light over a long distance through solid materials. However, Elezzabi and his colleagues, U of A graduate student Kenneth Chau and Dr. Mark Johnson of the U. S. Naval Research Laboratory, have successfully combined plasmonics and spintronics in a way that puts plasmonics in a new light, and puts a new spin on spintronics.

Working with gold and cobalt samples, Elezzabi and his team were able to demonstrate a plasmonically-activated spintronic device that switches light on and off by controlling electron spins. Also, they believe that with a slight alteration of the sample structure the effect is non-volatile, meaning that any given result can be maintained indefinitely without the necessity of a power source.

"With the development of this technology I envision a move from semiconductors [silicon chips] to metal based electronics with light-driven circuits," Elezzabi said.

The research was published recently in the academic journal Physical Review Letters, and the researchers have filed for a patent for the applications they have developed.

"To me this is almost a natural evolution of the two fields. I'm actually surprised that no one else looked around and saw what others were doing and combined the two before we did," Elezzabi added. "This opens up a lot of possibilities; this is just the beginning."

Source: University of Alberta
回复此楼
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 chl5063 的主题更新
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[找工作] 售SCI文章,我:8O.5.5.1O.54,科目全,可十急 +4 vZfe6xYu34yj 2026-09-14 4/200 2026-09-18 02:28 by cITaGg3p5edr
[考博] 售SCI一区T0P文章,我:8.O55.1.O.54,科目全,可十急 +5 Aj1rhIDL5ixY 2026-09-14 6/300 2026-09-18 01:54 by cITaGg3p5edr
[考研] 售SCI文章,我:8O5.5.1.O.54,科目齐全,可+急 +8 LwdutQ8HoqWP 2026-09-13 8/400 2026-09-17 22:53 by cuPZTDXS3VOd
[考研] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +8 QUjhNVAcOSff 2026-09-13 9/450 2026-09-17 22:05 by cuPZTDXS3VOd
[基金申请] 国社科系统bug了,是不是要放榜了? +5 kynobel 2026-09-16 6/300 2026-09-17 21:37 by tosogo
[硕博家园] 售SCI一区文章,我:8.O.55.1.O.54,科目齐全,可伽急 +6 40ms4Wlo4umh 2026-09-14 6/300 2026-09-17 13:53 by ObVzqQQh1rrE
[考研] 售SCI一区T0P文章,我:8O.55.1.O.54,科目全,可伽急 +6 23jxep3nCNZb 2026-09-14 6/300 2026-09-17 13:29 by ObVzqQQh1rrE
[硕博家园] 售SCI一区文章,我:8O5.5.1.O5.4,科目全,可伽急 +4 yaCh4X3wd045 2026-09-14 4/200 2026-09-17 13:17 by ObVzqQQh1rrE
[找工作] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +4 6F5UbRU2I5hL 2026-09-14 4/200 2026-09-17 13:05 by ObVzqQQh1rrE
[找工作] 售SCI一区T0P文章,我:8.O.55.1.O54,科目全,可伽急 +5 s3fFTmArrBt6 2026-09-14 6/300 2026-09-17 12:29 by ObVzqQQh1rrE
[找工作] 售SCI一区T0P文章,我:8.O.55.1.O.5.4,科目全,可+急 +6 6F5UbRU2I5hL 2026-09-14 6/300 2026-09-17 03:04 by Tql5LQhh5rLK
[找工作] 售SCI一区T0P文章,我:8O.55.1.O.54,科目全,可伽急 +3 s3fFTmArrBt6 2026-09-14 3/150 2026-09-17 02:38 by Tql5LQhh5rLK
[考研] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +7 QUjhNVAcOSff 2026-09-13 8/400 2026-09-17 01:16 by Tql5LQhh5rLK
[找工作] 售SCI一区T0P文章,我:8.O.55.1.O.54,科目齐全,可+急 +5 6F5UbRU2I5hL 2026-09-14 6/300 2026-09-16 17:27 by i3KBRD19ERkG
[公派出国] 售SCI一区T0P文章,我:8O.55.1.O.5.4,科目齐全,可+急 +3 6F5UbRU2I5hL 2026-09-14 3/150 2026-09-16 17:12 by i3KBRD19ERkG
[考研] 售SCI一区T0P文章,我:8.O.55.1.O.5.4,科目全,可+急 +4 s3fFTmArrBt6 2026-09-13 6/300 2026-09-16 16:00 by i3KBRD19ERkG
[考博] 售SCI文章,我:8O5.5.1.O.54,科目齐全,可+急 +7 QUjhNVAcOSff 2026-09-13 7/350 2026-09-16 14:36 by i3KBRD19ERkG
[考研] 售SCI一区T0P文章,我:8.O.55.1.O.5.4,科目全,可+急 +5 LwdutQ8HoqWP 2026-09-13 5/250 2026-09-16 03:14 by DgNGHc3h5tPl
[硕博家园] 售SCI一区T0P文章,我:8.O.55.1.O54,科目全,可伽急 +5 QUjhNVAcOSff 2026-09-13 5/250 2026-09-16 02:14 by DgNGHc3h5tPl
[教师之家] 售SCI一区文章,我:8.O.55.1.O.54,科目齐全,可伽急 +3 LwdutQ8HoqWP 2026-09-13 4/200 2026-09-14 16:13 by Aj1rhIDL5ixY
信息提示
请填处理意见