P. Bhupathi
University of Florida
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by P. Bhupathi.
Physical Review B | 2010
B. H. Moon; Naoto Masuhara; P. Bhupathi; Miguel Gonzalez; Mark W. Meisel; Young Hee Lee; N. Mulders
Longitudinal sound attenuation measurements in superfluid 3He in 98% aerogel were conducted at pressures between 14 and 33 bar and in magnetic fields up to 4.44 kG. The temperature dependence of the ultrasound attenuation in the A-like phase was determined for the entire superfluid region exploiting the field induced meta-stable A-like phase at the highest field. In the lower field, the A-B transition in aerogel was identified by a smooth jump in attenuation on both cooling and warming. Based on the transitions observed on warming, a phase diagram as a function of pressure (P), temperature (T) and magnetic field (B) is constructed. We find that the A-B phase boundary in aerogel recedes in a drastically different manner than in bulk in response to an increasing magnetic field. The implications of the observed phase diagram are discussed.
Journal of Physics: Conference Series | 2009
B. H. Moon; Naoto Masuhara; P. Bhupathi; Miguel Gonzalez; Mark W. Meisel; Yoonseok Lee; N. Mulders
Liquid 3He impregnated in high porosity aerogel shows many interesting features: significant suppression of superfluid transition and substantial modification of the the A-like to B-like transition. Ultrasound has been found to be a sensitive tool to measure these changes. Recently, the ultrasound attenuation measurements done in the B-like phase provided strong evidence for gapless superfluidity in liquid 3He in aerogel. We conducted high frequency sound propagation measurements at 6.22 MHz in the A-like phase of superfluid 3He induced by magnetic fields up to 4.44 kG. The magnetic field is applied perpendicular to the direction of sound propagation to see the noticeable change in attenuation between the A-like and the B-like phases. We measured the sound attenuation in the A-like phase to be larger than in the B-like phase, and this observation enabled us to identify the A-like to B-like phase transition as a function of magnetic field and pressure.
AIP Conference Proceedings | 2006
P. Bhupathi; J. Cancino; H. C. Choi; Yoonseok Lee
We describe the design and construction of an ultra low temperature cryostat. The precooling stage is an Oxford Kelvinox 400 dilution refrigerator, and the copper nuclear demagnetization stage is connected to the mixing chamber through an indium heat switch. This combination enabled us to stay below 1 mK for longer than 5 weeks. The whole system is mounted on a vibration isolated structure and the main pumping lines have various stages of mechanical filters and dampers. An automated melting pressure thermometer has been built and employed to measure the temperature.
Journal of Low Temperature Physics | 2011
Miguel Gonzalez; P. Bhupathi; B. H. Moon; Pan Zheng; George Ling; E. Garcell; Ho Bun Chan; Yoonseok Lee
Bulletin of the American Physical Society | 2011
E. Garcell; Miguel Gonzalez; B. H. Moon; P. Bhupathi; Pan Zheng; George Ling; Yoonseok Lee; Ho Bun Chan
Physical Review B | 2010
B. H. Moon; Naoto Masuhara; P. Bhupathi; Miguel Gonzalez; Mark W. Meisel; Yoonseok Lee; N. Mulders
Journal of Low Temperature Physics | 2010
P. Bhupathi; B. H. Moon; Miguel Gonzalez; Yoonseok Lee
Journal of Low Temperature Physics | 2010
B. H. Moon; Naoto Masuhara; P. Bhupathi; Miguel Gonzalez; Mark W. Meisel; N. Mulders; Yoonseok Lee
Bulletin of the American Physical Society | 2010
Yoonseok Lee; B. H. Moon; Naoto Masuhara; P. Bhupathi; Miguel Gonzalez; Mark W. Meisel; Nobert Mulders
Bulletin of the American Physical Society | 2010
B. H. Moon; Naoto Masuhara; P. Bhupathi; Miguel Gonzalez; Mark W. Meisel; Yoonseok Lee; Nobert Mulders