CAREER: Interplay of Disorder and Quantum Effects in Low Dimensional Magnets and Superconductors
职业:低维磁体和超导体中无序与量子效应的相互作用
基本信息
- 批准号:9733848
- 负责人:
- 金额:$ 30万
- 依托单位:
- 依托单位国家:美国
- 项目类别:Continuing Grant
- 财政年份:1998
- 资助国家:美国
- 起止时间:1998-05-01 至 2002-01-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
9733848 Beauchamp This is a CAREER award to a female scientist at a predominantly undergraduate institution. The research will explore the static and dynamic properties of magnetic and superconducting systems which exhibit quantum effects and disorder. One system consists of random ferromagnetic or antiferromagnet quantum spin chains which can be described by a one-dimensional, S=1/2 Heisenberg Hamiltonian with quenched disorder. The second system consists of ordered and disordered two-dimensional Ising antiferromagnets, with both short range and long range interactions. The two- dimensional Ising system in a transverse field is the simplest system which is expected to exhibit a quantum phase transition. The third magnetic system is consists of magnetic vortices in thin superconducting films containing ordered and disordered arrays of holes. The disordered system can be described by the random site, random field Ising model (RS/RFIM) in which particle interaction strength is controlled by simply changing the applied magnetic field. The critical properties of the spin systems will be probed via measurements of low temperature susceptibilities as a function of temperature and magnetic field. The local static configurations of the vortices in the superconductors will be examined using Bitter decoration, while the local dynamic motion of the vortices will be measured with Hall probe arrays. The educational component of this CAREER award will support development of an undergraduate research course, entitled "From the Minute to the Macroscopic: Probing the Properties of Atoms, Molecules, and Solids". The course will focus on experimental techniques in atomic and condensed matter physics, emphasizing the continuum in electronic and thermal properties from atoms to solids, and drawing on the research experience of the physics faculty at Wesleyan. %%% This is a CAREER award to a female scientist at a predominantly undergraduate institution. Physicists have been successful in developing a detailed understanding of electronic and magnetic properties in a wide range of materials. However, certain materials have not yielded to such an understanding owing to the presence of disorder and strong electronic interactions. A deeper understanding of such materials should aid in the development of advanced technological applications of these materials. This project will focus on the role of disorder and interparticle interactions in three magnetic systems. Two of these involve the magnetism produced by spins of electrons. The third is a system of magnetic flux tubes, called vortices, occurring in superconducting thin films with intentionally fabricated defects. The grant will also support the development of an undergraduate research course, entitled "From the Minute to the Macroscopic: Probing the Properties of Atoms, Molecules, and Solids". The course will focus on experimental techniques in atomic and condensed matter physics. It will emphasize the common physical concepts that are applicable from relatively simple atoms to complex solids. The course will draw on the research experience of the physics faculty at Wesleyan. The course will also be offered to high school teachers enrolled as summer students in the Graduate Liberal Studies Program at Wesleyan. This course will prepare both undergraduates and high school teachers to work in the research labs either during the school year or during a subsequent summer. ***
小行星9733848 这是一个职业奖,在一个以本科为主的机构的女科学家。 该研究将探索表现出量子效应和无序的磁性和超导系统的静态和动态特性。一个系统由随机的铁磁或反铁磁量子自旋链组成,可以用一维的S=1/2的海森堡哈密顿量来描述。第二个系统由有序和无序的二维伊辛反铁磁体,与短程和长程相互作用。 横场中的二维伊辛系统是最简单的系统,它被期望表现出量子相变。 第三个磁系统是由超导薄膜中的磁涡旋组成的,薄膜中含有有序和无序排列的空穴。无序体系可用无规位无规场伊辛模型(RS/Rsing)来描述,其中粒子间的相互作用强度由简单的 改变所施加的磁场。自旋系统的临界性质将通过测量低温磁化率作为温度和磁场的函数来探测。 的 涡的局部静态结构 在 超导体将使用比特装饰来检查,而涡旋的局部动态运动将使用霍尔探针阵列来测量。该职业奖的教育部分将支持本科研究课程的开发,题为“从分钟到宏观:探测原子,分子和固体的性质”。 该课程将侧重于原子和凝聚态物理学的实验技术,强调从原子到固体的电子和热性质的连续性,并借鉴Wesleyan物理系的研究经验。 这是一个职业奖,在一个以本科为主的机构的女科学家。物理学家已经成功地发展了对各种材料的电子和磁性的详细了解。 然而,由于无序和强电子相互作用的存在,某些材料还没有屈服于这样的理解。对这些材料的更深入了解应有助于这些材料的先进技术应用的发展。 这个项目将集中在三个磁系统中的无序和粒子间相互作用的作用。其中两个涉及电子自旋产生的磁性。第三个是系统, 磁 通量 管,称为涡流, 发生 在超导薄膜中故意制造缺陷。 这笔赠款还将支持开发一门本科研究课程,题为“从微观到宏观:探索原子、分子和固体的性质”。 本课程将着重于原子和凝聚态物理学的实验技术。它将强调适用于从相对简单的原子到复杂固体的常见物理概念。本课程将借鉴卫斯理大学物理系的研究经验。该课程也将提供给高中教师作为夏季学生在研究生通识教育计划在卫斯理。 本课程将为本科生和高中教师在学年或随后的夏季在研究实验室工作做好准备。 ***
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Kara Beauchamp其他文献
Kara Beauchamp的其他文献
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{{ truncateString('Kara Beauchamp', 18)}}的其他基金
Mentoring Students to Success in STEM Fields
指导学生在 STEM 领域取得成功
- 批准号:
1564787 - 财政年份:2016
- 资助金额:
$ 30万 - 项目类别:
Standard Grant
CAREER: Interplay of Disorder and Quantum Effects in Low Dimensional Magnets and Superconductors
职业:低维磁体和超导体中无序与量子效应的相互作用
- 批准号:
0296119 - 财政年份:2001
- 资助金额:
$ 30万 - 项目类别:
Continuing Grant
Correlations, Disorder, and the Anderson-Mott Transition in the Bose Glass
Bose 玻璃中的相关性、无序性和安德森-莫特转变
- 批准号:
9705513 - 财政年份:1997
- 资助金额:
$ 30万 - 项目类别:
Standard Grant
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