24小时热门版块排行榜    

查看: 314  |  回复: 2
当前主题已经存档。

clfu2000

木虫 (著名写手)

小木虫村村长

[交流] Carbon nanotube quantum dots ——国外博士论文

Title: Carbon nanotube quantum dots  

Type of Object: Doctoral thesis
Author(s) :Sapmaz, S.  
Contributor(s) .P. Kouwenhoven, prof.dr.ir. (promotor)  
Date :2006-06-20  
Keyword(s): carbon nanotube quantum dots, nanomechanics,  
Summary  Low temperature electron transport measurements on individual single wall carbon nanotubes are described in this thesis. Carbon nanotubes are small hollow cylinders made entirely out of carbon atoms. At low temperatures (below ~10 K) finite length nanotubes form quantum dots. Because of its small size a quantum dot has a discrete set of energy levels where electrons can be placed. Therefore, it resembles an atom in many aspects. The research presented here focuses on understanding the behavior of nanotube quantum dots. Until recently, we have fabricated nanotube quantum dots by just evaporating metal contacts on top of the nanotube segments. This way tunnelbarriers develop naturally at the nanotube-metal interfaces. The addition of a single electron requires a considerable energy due to the small size of the nanotube. At low temperatures this energy is absent, and the nanotube quantum dot is then in the 'Coulomb blockade' regime. Applying a bias voltage between the electrodes or changing the electrostatic potential of the quantum dot by a voltage on a nearby gate can lift the Coulomb blockade and hence allow single electron tunneling processes through the barriers. By measuring the current going through the nanotube we study the electron transport behavior of the nanotube quantum dot. We are primarily focussed on nanotube quantum dots in the 'closed' quantum dot regime. In this regime the tunnelbarriers are very opaque and the electrons are strongly confined in the quantum dot. Also, the energy width are sharply defined allowing for accurate spectroscopy measurements. In chapter 4 we report the first observation of the discrete energy spectrum of semiconducting nanotubes. Furthermore, the semiconducting nanotube quantum dot can be completely depleted from free charge carriers. Electrons or holes could be added one by one. This permits us to compare the excitation spectra for electrons and holes. We find that they are symmetric, as expected from the symmetry in the bandstructure. The energy spectra of metallic nanotubes in the closed quantum dot regime are explained in chapter 5. Using a model, which extends the 'constant interaction model' with exchange interaction effects and the orbital degeneracy of the nanotube bandstructure, the full measured energy spectrum of the nanotube quantum dot is identified and accounted for. Of recent interest in the field of nanoscience is the interplay between electrical and mechanical properties. In a theoretical study we predict that the tunneling of a single electron onto a suspended nanotube drastically modifies the quantized vibrational eigenmodes due to the electrostatic forces which bend and tension the nanotube. Measurements performed on quantum dots in freely suspended nanotube at low temperatures shows a small, harmonic excitation spectrum, which can not be identified with purely electronic excitations. We propose phonon assisted tunneling to be responsible for these excitations. Using a Franck-Condon based model, in which the phonon assisted tunneling processes are modeled as a coupling of electronic levels to underdamped quantum harmonic oscillators, we find good agreement with the measurements. Lately, the emphasis of carbon nanotube quantum dot research is shifting towards defining nanotube quantum dots with tunable barriers. In the last chapter we present a fabrication procedure for defining nanotube quantum dots with controllable barriers. This way it was possible to extend the system to form a double quantum dot. This last step was highly motivated by the possibility that double quantum dot systems could act as a solid state quantum bit. We perform transport measurements on the nanotube double quantum dot and observe the excited states of the systems. This opens up new possibilities for fundamental and applied studies on nanotube quantum dots.  
   
Link: 点击下载

[ Last edited by clfu2000 on 2007-7-13 at 08:24 ]
回复此楼
人之所以快乐 不是因为得到的多 而是因为计较的少 财富不是一生的朋友 而朋友是一生的财富!
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

clfu2000

木虫 (著名写手)

小木虫村村长

人之所以快乐 不是因为得到的多 而是因为计较的少 财富不是一生的朋友 而朋友是一生的财富!
2楼2007-07-13 08:32:41
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 clfu2000 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
[基金申请] 关于代码变化问题,想知道的进来 +14 且听虎啸 2026-08-07 20/1000 2026-08-09 18:03 by 天神眷顾
[基金申请] filecode与中标关系的预测 +5 布布和一二 2026-08-07 5/250 2026-08-09 16:15 by 袁向阳007
[考博] 【2027博士申请】纳米药物递送方向 20+3 13586093586 2026-08-03 5/250 2026-08-08 21:54 by 13586093586
[基金申请] 关于豆爷回答的JTJC与%2F数量 +5 yang182083 2026-08-06 7/350 2026-08-08 18:29 by zhanghaozhu
[基金申请] 国基金的申报应该改成非等额制,评价高的钱多评价低的钱少,但是增加资助率 +7 a089 2026-08-07 7/350 2026-08-08 18:05 by gltch
[基金申请] 好奇怪的filecode +3 布布和一二 2026-08-08 4/200 2026-08-08 17:46 by zhanghaozhu
[硕博家园] 售SCI文章,我:8O.5.5.1O.54,科目全,可十急 +3 qTvzQBRAHjCi 2026-08-07 4/200 2026-08-08 17:19 by oEVWOejN9taj
[考研] 售SCI一区T0P文章,我:8.O55.1.O.54,科目全,可十急 +3 qTvzQBRAHjCi 2026-08-07 5/250 2026-08-08 16:47 by oEVWOejN9taj
[基金申请] 售SCI文章,我:8O.5.5.1O.54,科目全,可十急 +3 Vi50GxzrFcSG 2026-08-07 5/250 2026-08-08 16:27 by oEVWOejN9taj
[考博] 售一区SCI文章T0P,我:8O.551.O54,科目全,可十急 +3 Vi50GxzrFcSG 2026-08-07 4/200 2026-08-08 16:22 by oEVWOejN9taj
[基金申请] 售SCI-T0P文章,我:8O.5.5.1.O.54,科目齐全,可+急 +3 Vi50GxzrFcSG 2026-08-07 4/200 2026-08-08 16:19 by oEVWOejN9taj
[博后之家] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +3 Vi50GxzrFcSG 2026-08-07 4/200 2026-08-08 16:02 by oEVWOejN9taj
[公派出国] 售SCI文章,我:8O5.5.1.O.54,科目齐全,可+急 +3 HEQlVqMTIA7d 2026-08-07 6/300 2026-08-08 14:39 by oEVWOejN9taj
[论文投稿] 售SCI一区T0P文章,我:8O.55.1.O.5.4,科目齐全,可+急 +3 HEQlVqMTIA7d 2026-08-07 5/250 2026-08-08 14:22 by oEVWOejN9taj
[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 KXLV3nuBVBY7 2026-08-07 5/250 2026-08-08 14:07 by oEVWOejN9taj
[基金申请] 关于filecode +4 布布和一二 2026-08-07 7/350 2026-08-07 22:55 by zhanghaozhu
[基金申请] 化学口download_prp&fileCode的固定段好像这几天一直没变,有变的大神么? +3 Tide man 2026-08-07 4/200 2026-08-07 22:39 by Tide man
[基金申请] 固定端突然变了,今天 +6 archvillain 2026-08-06 10/500 2026-08-07 16:03 by 医学老男孩
[基金申请] 听说今天filecode变了 +24 布布和一二 2026-08-06 47/2350 2026-08-07 16:02 by zhiyanjiang
[基金申请] 好消息?这个有何含义??? +8 Tide man 2026-08-05 10/500 2026-08-05 16:14 by xmuxiaoyu
信息提示
请填处理意见