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185
.lancs.ac.uk/depts/physics/
www
RESEARCH FACILITIES TAUGHT COURSES
There is excellent support for physicists at Lancaster. Experimental
research in elementary particle physics uses the accelerators at MSc in Biophotonics
Fermilab (USA) and the new LHC being constructed at CERN Please see entry under Lancaster Environment Centre.
(Geneva). Experiments are designed and apparatus is prepared in
RESEARCH DEGREES
Physics
Lancaster. A major effort goes into data analysis, using high
powered Linux workstations and a fully-dedicated 400-processor We welcome applications from those seeking to perform research
Grid computing facility in Lancaster. for the degrees of MPhil or PhD. Research opportunities are
available within each of our research areas.
There are extensive facilities of the Ultra-Low Temperature
Laboratory (ULT) allowing experiments to be performed over the MPhil/PhD
millikelvin and microkelvin range. The Departmental helium
liquefier and recovery system ensures a reliable supply of liquid
4
He. Entry Requirements: Applicants should hold at least an upper
echnology:
Further cryostat cooling is performed using pumped liquid
3
He (to second-class BSc or MPhys honours degree, or its equivalent, in a
300 mK),
3
He -
4
He dilution refrigerators (to 2 mK), or nuclear relevant subject.
demagnetisation (to well below 100µk). High magnetic fields are Assessment: Original research and thesis.
available from 2 superconducting solenoids (up to 8 tesla). IELTS: 6.5
Funding: EPSRC, STFC - see also page 196.
The department has state of the art molecular beam epitaxy Further Information: www.lancs.ac.uk/depts/physics
facilities and specially equipped clear room labs for fabrication and
study of III-V semiconductor nanostructures and devices.
RESEARCH AREAS
Characterisation facilities include a field-emission-gun SEM with
Our research is concentrated within the broad areas of elementary
Science and T
\e-beam lithography, x-ray diffraction, a suite of multifunctional
particle physics and cosmology, and condensed matter physics. It
scanning probe microscopy instruments, picosecond lasers covering
covers both theoretical and experimental aspects, grouped
visible and mid-IR range, (low temperature) photo and electro-
under Elementary Particle Physics, Condensed Matter Physics, and
luminescence magnetic fields up to 17 T and state of the art
Theoretical Physics.
radio-frequency analytical equipment from kHz to 100 GHz range.
There is also extensive and vigorous cross-divisional activity in which
Provision of computing facilities includes Linux workstations used
complementary expertise from widely differing areas of physics is
by the Particle Physics Group and a large £1.1M Beowulf-class
brought to bear on important problems of topical interest, e.g.
computer for the Condensed Matter Theoretical Group. These are
studies of new materials such as graphene and molecular
supplemented by powerful central facilities within the University
nanowires, cosmological experiments in liquid helium, nonlinear
computer services. Fast network links allow the use of regional
dynamics of biological rhythm and IR spectroscopy and nanoscale
and national supercomputers. Many of the experimental facilities
probe microscopy of biological objects.
have on-line computer links for control and data acquisition.
Some postgraduate students may have the opportunity to
undertake part of their research work abroad in another EC
country, under the EU student mobility scheme SOCRATES. Others
may spend periods working at CERN, Geneva, Fermilab, Chicago,
or Kamioka/Tokai (Japan), Berlin, ETH Zurich.
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