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PhD Sensing and Switching ‘hidden’ Nanomagnets, Netherlands: Physics

The Department of Applied Physics at the Eindhoven University of Technology (TU/e) has a scientific and technical staff of about 90 and 60 people, respectively, as well as 110 graduate and 375 undergraduate students. The research in the group Mesoscopic Transport Phenomena focuses on fluid dynamics at length scales ranging from 10 nm to 1 mm. It comprises both fundamental and application-inspired topics ranging from fluid physics at nano-scales to manufacturing processes of optoelectronic devices. Current and commencing projects concern dip- and die-coating of chemically patterned substrates, flows driven by temperature and concentration gradients, flows dominated by van der Waals forces as well as flows involving phase changes.

The OIO position is financed by FOM for a period of four years. We are searching for an excellent candidate with a master of science in experimental (applied) physics. A background related to condensed matter physics, nanomagnetism, spintronics, and/or scanning tunneling microscopy will be appreciated.

Appointment and salary

We offer:

* A challenging job in a young, ambitious research team
* A highly dynamical, international, and multidisciplinary research environment
* A full-time appointment for four years (start date as soon as possible)
* Gross monthly salary from €2042 (first year) to €2612 (fourth year) in line with the Collective Agreement for Dutch Universities
* An attractive package of fringe benefits, including end-of-year allowance, a personal development program for Ph.D students (Proof program), and excellent sport facilities

Scholarship Application Deadline: 31/01/2011
Further Scholarship Information and Application

PhD Sensing and Switching ‘hidden’ Nanomagnets, Netherlands: Physics

The Department of Applied Physics at the Eindhoven University of Technology (TU/e) has a scientific and technical staff of about 90 and 60 people, respectively, as well as 110 graduate and 375 undergraduate students. The research in the group Mesoscopic Transport Phenomena focuses on fluid dynamics at length scales ranging from 10 nm to 1 mm. It comprises both fundamental and application-inspired topics ranging from fluid physics at nano-scales to manufacturing processes of optoelectronic devices. Current and commencing projects concern dip- and die-coating of chemically patterned substrates, flows driven by temperature and concentration gradients, flows dominated by van der Waals forces as well as flows involving phase changes.

The OIO position is financed by FOM for a period of four years. We are searching for an excellent candidate with a master of science in experimental (applied) physics. A background related to condensed matter physics, nanomagnetism, spintronics, and/or scanning tunneling microscopy will be appreciated.

Appointment and salary

We offer:

* A challenging job in a young, ambitious research team
* A highly dynamical, international, and multidisciplinary research environment
* A full-time appointment for four years (start date as soon as possible)
* Gross monthly salary from €2042 (first year) to €2612 (fourth year) in line with the Collective Agreement for Dutch Universities
* An attractive package of fringe benefits, including end-of-year allowance, a personal development program for Ph.D students (Proof program), and excellent sport facilities

Scholarship Application Deadline: 31/01/2011
Further Scholarship Information and Application

PhD Engineering and Integration of Electrical Domain-Wall Memory Devices, Netherlands

The Department of Applied Physics at the Eindhoven University of Technology (TU/e) has a scientific and technical staff of about 90 and 60 people, respectively, as well as 110 graduate and 375 undergraduate students. The research in the group Mesoscopic Transport Phenomena focuses on fluid dynamics at length scales ranging from 10 nm to 1 mm. It comprises both fundamental and application-inspired topics ranging from fluid physics at nano-scales to manufacturing processes of optoelectronic devices. Current and commencing projects concern dip- and die-coating of chemically patterned substrates, flows driven by temperature and concentration gradients, flows dominated by van der Waals forces as well as flows involving phase changes.

Spin-torque based magnetic domain wall (DW) memories can offer large storage densities by storing multiple bits (domain walls) in a single magnetic nanowire. Stacking of the nanowires in a back-end-of-line (BEOL) process may even allow 3D integration. This project emphasizes the engineering and application aspects and focusses on key technological issues of magnetic domain walls such as thermal stability, stabilization of DWs at notches or other pinning centers, reproducibility of motion (influence of line-edge roughness, temperature dependence), critical current density, heating, high-frequency read and write elements, and how these evolve as dimensions are scaled towards sub-100 nm wires. TU/e will contribute by engineering novel materials, e.g. with perpendicular magnetization or low damping, allowing for a unique tunability of damping, spin polarization, and pinning potential, all crucial parameters for the efficiency of future DW memory devices.

Appointment and salary

We offer:

* A challenging job in a young, ambitious research team
* A highly dynamical, international, and multidisciplinary research environment
* A full-time appointment for four years (start date as soon as possible)
* Gross monthly salary from €2042 (first year) to €2612 (fourth year) in line with the Collective Agreement for Dutch Universities
* An attractive package of fringe benefits, including end-of-year allowance, a personal development program for Ph.D students (Proof program), and excellent sport facilities

Scholarship Application Deadline: 31/01/2011
Further Scholarship Information and Application