Quantum dislocations: the fate of multiple vacancies in two dimensional solid 4He
arXiv:0907.3685 · doi:10.1088/0953-8984/22/14/145401
Abstract
Defects are believed to play a fundamental role in the supersolid state of 4He. We have studied solid 4He in two dimensions (2D) as function of the number of vacancies n_v, up to 30, inserted in the initial configuration at rho = 0.0765 A^-2, close to the melting density, with the exact zero temperature Shadow Path Integral Ground State method. The crystalline order is found to be stable also in presence of many vacancies and we observe two completely different regimes. For small n_v, up to about 6, vacancies form a bound state and cause a decrease of the crystalline order. At larger n_v, the formation energy of an extra vacancy at fixed density decreases by one order of magnitude to about 0.6 K. In the equilibrated state it is no more possible to recognize vacancies because they mainly transform into quantum dislocations and crystalline order is found almost independent on how many vacancies have been inserted in the initial configuration. The one--body density matrix in this latter regime shows a non decaying large distance tail: dislocations, that in 2D are point defects, turn out to be mobile, their number is fluctuating, and they are able to induce exchanges of particles across the system mainly triggered by the dislocation cores. These results indicate that the notion of incommensurate versus commensurate state loses meaning for solid 4He in 2D, because the number of lattice sites becomes ill defined when the system is not commensurate. Crystalline order is found to be stable also in 3D in presence of up to 100 vacancies.
References in corpus (19)
- Low Temperature Shear Modulus Changes in Solid 4-He and Connection to Supersolidity
- Luttinger Liquid in the Core of Screw Dislocation in Helium-4
- Superfluidity of Grain Boundaries in Solid Helium-4
- The fate of vacancy-induced supersolidity in 4He
- What makes a crystal supersolid ?
- Supersolid Helium at High Pressure
- Ab-initio low-energy dynamics of superfluid and solid 4He
- Nonclassical Rotational Inertia in Single Crystal Helium
- Searching for a Supersolid in Cold Atom Optical Lattices
- Local stress and superfluid properties of solid Helium-4
- A Gross-Pitaevskii Treatment for Supersolid He
- Exact ground state Monte Carlo method for Bosons without importance sampling
- Solid 4He and the Supersolid Phase: from Theoretical Speculation to the Discovery of a New State of Matter? A Review of the Past and Present Status of Research
- Bose Einstein Condensation of incommensurate solid 4He
- Bose Fluids Above Tc: Incompressible Vortex Fluids and "Supersolidity"
- Torsional oscillator and synchrotron x-ray experiments on solid 4He in aerogel
- Binding of a 3He impurity to a screw dislocation in solid 4He
- Zero-point vacancies in quantum solids
- Zero-temperature study of vacancies in solid 4He
Cited by in corpus (10)
- Simulation and understanding of quantum crystals
- Supersolidity in quantum films adsorbed on graphene and graphite
- Path integral Monte Carlo ground state approach: Formalism, implementation, and applications
- Quantum Monte Carlo study of a vortex in superfluid He and search for a vortex state in the solid
- Superfluid behavior of quasi-1D p-H inside carbon nanotube
- Defects and glassy dynamics in solid He-4: Perspectives and current status
- Study of solid 4He in two dimensions. The issue of zero-point defects and study of confined crystal
- Transverse Quantum Superfluids
- Quantized vortices in two dimensional solid 4He
- Saga of Superfluid Solids