国际学生入学条件
As an overview these are the main documents that will be required to submit to the Graduate College
Transcripts Original transcript from each college or university attended all transcripts submitted to the Graduate College must be official with the colleges or registrars original seal and should show any degrees completed
Resume Vitae Submit a Resume or Curriculum Vitae of your academic and professional backgrounds and experiences 1-2 pages
Statement of Purpose Submit a statement in your own words of your background academic preparation reasons for pursuing a degree in Physics or Photonics and career aspirations 1-2 pages
Recommendations Names and contact information of three 3 persons familiar with the applicants academic preparation to pursue a degree in Physics or Photonics andor jobrelated skills in these fields
English Proficiency for International Students All persons for whom English is a second language are required to present proof of English competency
An official TOEFL score of at least 90 internet based test is required to be submitted The TOEFL institution code for OSU is 6546
Alternatively an official IELTS academic stream overall band score of at least 7.0 may be submitted
Another alternative is an official PTE score of at least 61
The examination must have been taken within the last two years Outstanding applicants with official TOEFL scores of 79-90 IELTS scores of 6.5-7.0 or PTE scores of 53-60 will also be considered for admission into the graduate programs
Although the Graduate College does not require proof of English proficiency for an applicant who has or will have completed a baccalaureate or graduate degree from a college or university where English is the primary teaching language and which is located in a country where English is a primary language the applicant may still need to submit a TOEFL IELTS or PTE score to the Physics Department for employment as a Teaching Assistant
Please check the complete requirement description on the Graduate College English Proficiency page
GRE It is strongly recommended that applicants submit both general and subject test Physics GRE scores These scores will help us to determine the distribution of assistantships with tuition waivers We will review applications with self-reported scores but applicants should be aware that official scores may be requested before admission is formally offered
The recommended cumulative grade point average GPA for MS or PhD students is a minimum of 3.0 or higher.
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雅思考试总分
7.0
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雅思考试指南
- 雅思总分:7
- 托福网考总分:90
- 托福笔试总分:160
- 其他语言考试:PTE score of at least 61
CRICOS代码:
申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
Donna Bandy博士(贵族研究学者)和她的学生正在研究耳语回廊模式(WGM),它们使用复杂的建模技术来预测特性,例如使用锥形光纤的模式激发和输出耦合。Mario Borunda博士研究量子信息科学和量子计算中的几个问题。他的小组对了解玻色-爱因斯坦凝聚物和超冷费米原子系统的性质感兴趣。特别是原子系统中的自旋输运和诱导自旋轨道耦合的效应。刘迎梅博士领导一个实验性AMO物理小组,该小组是OSU光子学多学科计划的一部分。主要研究兴趣是研究在绝对零温度附近用玻色-爱因斯坦钠缩合物进行的自旋挤压及其在量子信息
Dr. Donna Bandy (Noble Research Fellow) and her students are investigating whispering gallery modes (WGM's) using sophisticated modeling techniques to predict properties such as mode excitation and outcoupling using tapered optical fibers. Dr. Mario Borunda studies several problems in quantum information science and quantum computing. His group is interested in understanding the properties of Bose-Einstein condensates and ultra cold Fermi atomic systems. Particularly, spin transport in and the effects of inducing spin-orbit coupling in atomic systems. Dr. Yingmei Liu leads an experimental AMO physics group, a part of a multidisciplinary program in Photonics at OSU. The main research interest is to investigate spin-squeezing with sodium Bose-Einstein Condensates near absolute zero temperature, and its immediate applications to quantum information science. Dr. Al Rosenberger is studying the fundamental properties and technical applications of whispering gallery modes (WGM's) of light in dielectric microresonators. For example, a fused-silica microsphere less than 1 mm in diameter supports many WGMs, whose evanescent parts extend outside the sphere to feel the environment. Applications include quantum-dot microlasers and chemical sensors. Dr. Gil Summy is using Bose-Einstein Condensation in Rubidium-87 to investigate fundamental issues in quantum chaos and atom trapping. In August 2004, Dr. Summy's group achieved a Bose Einstein condensate using optical trapping methods exclusively, thereby becoming one of the first such groups in the world to do so. The group maintains active collaborations with Dr. William Phillips' (Nobel Laureate 1997) group at NIST. Dr. Emrah Turgut's research field is experimental condensed matter. He focuses on novel magnetic materials and electron, spin, and phonon dynamics in them. His group has expertise on growing, characterizing, fabricating functioning devices, and performing ultrabroadband spectroscopy and microscopy of these materials. His team's overreaching goal is to create power efficient and superior computing and information storage applications using these materials.
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