| 5 | 1/1 | 返回列表 |
| 查看: 5412 | 回復(fù): 16 | |||||
| 當前只顯示滿足指定條件的回帖,點擊這里查看本話題的所有回帖 | |||||
老海龜專家顧問 (知名作家)
|
[交流]
2017年第二輪中德博士后聯(lián)合獎學(xué)金項目(27個崗位共22份聯(lián)合獎學(xué)金) 已有11人參與
|
||||
|
博管辦與亥姆霍茲聯(lián)合會的中德博士后聯(lián)合獎學(xué)金共約定50個待遇優(yōu)厚的獎學(xué)金項目,在前一輪只收集到50個申請人通過正規(guī)的途徑即博士后工作站投遞申請材料,其中29人通過評審。因為與50份獎學(xué)金的差異較大,經(jīng)雙邊商量,額外設(shè)置了今年的第二輪申請人征集,除了在第一輪中沒有獲得申請人,或者導(dǎo)師仍然有猶豫不能最后確認成功申請人的崗位之外,也投放了個別新的崗位。其中,也包括下面這個KIT05崗位, 第一位入選者因為另有美國的全額博士后而放棄;第二位入選者因為個人身體原因而放棄,另外的兩位申請人不能令導(dǎo)師滿意,因此而繼續(xù)開放,期待理想中的申請人出現(xiàn)。 http://www.gaoyang168.com/t-11585961-1 Call of the KIT 05 position Helmholtz–OCPC Programme 2017-2021 for the Involvement of Postdocs in Bilateral Collaboration Projects with China partly funded by the Office of the China Postdoctoral Council (OCPC) of the Ministry of Human Resources and Social Security (MoHRSS) Part A Project Title: Shape Memory Nanoactuators for Nanophotonic Devices Karlsruhe Institute of Technology, Institute of Microstructure Technology (IMT) Contact: Prof. Dr. M. Kohl, E-mail: manfred.kohl@kit.edu, WEB: https://www.imt.kit.edu/english/214.php Research Topic: This research focuses on novel integrated actuators based on shape memory alloys (SMAs) with nanoscale dimensions for control of optical signals in silicon waveguide structures. Miniaturization and integration of SMA actuators in nanoscale systems is motivated by their large work output in the order of 107 Jm-3 enabling ultra-small layouts. One example is the ferromagnetic SMA NiMnGa that exhibits outstanding actuation properties in bulk shape, such as thermo-elastic and magneto-strain effects up to 12%. Using these effects at the nanoscale opens up a new generation of mechanically active devices having switching and tuning capability. Here, target applications are adaptive silicon photonic devices that are expected to provide substantial size and cost reduction compared to traditional optical solutions in communication technology. In previous work, free-standing SMA-Si bimorph cantilever actuators with lateral dimensions of 200 nm have been developed showing actuation based on superimposed shape memory and bimorph effects. This technology will be further down-scaled to lateral dimensions below 100 nm and combined with Si waveguide technology. The thermo-mechanical and optical properties of mechanically active Si photonic devices will be investigated by finite element (FE) simulations and in-situ measurements. The research topic includes the following tasks: - Characterization of SMA material properties (SEM, XRD, DSC, tensile experiments,DIC...) - Development / optimization of nanofabrication technologies - Finite element simulations (multiphysics), modeling of optical wave propagation - Design, fabrication and characterization of Si photonic demonstrator systems This research has a pronounced interdisciplinary character covering different fields of materials science, mechanical and electronic engineering. For fabrication, the IMT operates a state-of-the-art cleanroom facility including electron beam lithography, physical vapor deposition and reactive ion etching. Furthermore, IMT is part of the Karlsruhe Nano Micro Facility (KNMF) at KIT providing free access to multi-material state-of-the-art micro and nanotechnologies. Advanced simulation tools and measurement equipment are available for investigation of device performance. Cooperation: IMT is seeking for new collaboration(s) with one or several research groups at China’s top elite universities at the interface of smart materials research, nanotechnology and photonics. The demanding and interdisciplinary nature of the research topic requires expertise from the fields of materials science, physics and engineering. The postdoctoral candidate(s) will be integrated into a running project at IMT in order to establish an international collaboration of researchers with complementary expertise and common interest in translating basic science and new technology into photonics applications. Requested qualification: Background in materials science, mechanical and electrical engineering, cleanroom technologies; experience in FEM simulation is of advantage Part B of the form contains the documents to be submitted by the postdoc to the OCPC and can be supplemented and modified by the project leader depending on the project proposal. Reason for the candidate's personal interest in a research visit to KIT CV and copies of certificates List of publications Two letters of recommendation Evidence of competence in English Part C of the form describes the conditions of the programme which must be observed by the postdoc. Completion of PhD within the past five years Not older than 35 years at the time of application |

| 請問樓主,博管辦的網(wǎng)址是哪個?http://www.chinapostdoctor.org.c ... ID=website001002001是這個中國博士后網(wǎng)嗎?這是很好的出國機會,但是找不到全部的位置,麻煩閑暇時回復(fù)一下 |
木蟲 (著名寫手)
應(yīng)助 攢人品咯~

禁蟲 (正式寫手)
|
本帖內(nèi)容被屏蔽 |
木蟲 (正式寫手)
| 最具人氣熱帖推薦 [查看全部] | 作者 | 回/看 | 最后發(fā)表 | |
|---|---|---|---|---|
|
[考研] 一志愿蘇州大學(xué)材料求調(diào)劑,總分315(英一) +3 | sbdksD 2026-03-19 | 3/150 |
|
|---|---|---|---|---|
|
[考研] 梁成偉老師課題組歡迎你的加入 +9 | 一鴨鴨喲 2026-03-14 | 11/550 |
|
|
[考研] 【考研調(diào)劑】化學(xué)專業(yè) 281分,一志愿四川大學(xué),誠心求調(diào)劑 +5 | 吃吃吃才有意義 2026-03-19 | 5/250 |
|
|
[考研] 324分 085600材料化工求調(diào)劑 +3 | llllkkkhh 2026-03-18 | 3/150 |
|
|
[考研] 346求調(diào)劑[0856] +3 | WayneLim327 2026-03-16 | 6/300 |
|
|
[考研] 材料080500調(diào)劑求收留 +4 | 一顆meteor 2026-03-13 | 4/200 |
|
|
[考研] 【同濟軟件】軟件(085405)考研求調(diào)劑 +3 | 2026eternal 2026-03-18 | 3/150 |
|
|
[考研] 化學(xué)工程321分求調(diào)劑 +15 | 大米飯! 2026-03-15 | 18/900 |
|
|
[考研] 331求調(diào)劑(0703有機化學(xué) +7 | ZY-05 2026-03-13 | 8/400 |
|
|
[考研] 268求調(diào)劑 +6 | 簡單點0 2026-03-17 | 6/300 |
|
|
[考研] 301求調(diào)劑 +9 | yy要上岸呀 2026-03-17 | 9/450 |
|
|
[考研] 334求調(diào)劑 +3 | 志存高遠意在機?/a> 2026-03-16 | 3/150 |
|
|
[考研] 考研求調(diào)劑 +3 | 橘頌. 2026-03-17 | 4/200 |
|
|
[考研] 301求調(diào)劑 +4 | A_JiXing 2026-03-16 | 4/200 |
|
|
[考研] 085601求調(diào)劑 +4 | Du.11 2026-03-16 | 4/200 |
|
|
[考研] 332求調(diào)劑 +6 | Zz版 2026-03-13 | 6/300 |
|
|
[考研] 304求調(diào)劑 +3 | 曼殊2266 2026-03-14 | 3/150 |
|
|
[考研] 復(fù)試調(diào)劑 +3 | 呼呼?~+123456 2026-03-14 | 3/150 |
|
|
[考研] 266求調(diào)劑 +4 | 學(xué)員97LZgn 2026-03-13 | 4/200 |
|
|
[考研] 311求調(diào)劑 +3 | 冬十三 2026-03-13 | 3/150 |
|