The macroscopic quantum behavior of protons in the KHCO3 crystal: Theory and experiments

نویسندگان

  • François Fillaux
  • Alain Cousson
  • Matthias Gutmann
  • Matthias J. Gutmann
چکیده

For hydrogen bonded crystals exhibiting proton transfer along hydrogen bonds, namely O1−H · · ·O2 ←→ O1 · · ·H−O2, there is a dichotomy of interpretation consisting in that while the crystal lattice is a quantum object with discrete vibrational states, protons are represented by a statistical distribution of classical particles with definite positions and momenta at any time. We propose an alternative theoretical framework for decoherence-free macroscopic proton states. The translational invariance of the crystal, the adiabatic separation of proton dynamics from that of heavy atoms, the nonlocal nature of proton states, and quantum interferences, are opposed to statistical distributions and semiclassical dynamics. We review neutron scattering studies of the crystal of potassium hydrogen carbonate (KHCO3) supporting the existence of macroscopic quantum correlations, from cryogenic to room temperatures. In addition, quantum fluctuations calculated for superposition states in thermal equilibrium are consistent with measurements of the correlation time. There is no temperature induced transition from the quantum to the classical regime. The crystal can be therefore represented by a state vector and the dichotomy of interpretation must be abandoned. François Fillaux UPMC Univ Paris 06, UMR 7075, LADIR, F-75005, Paris, France CNRS, UMR7075, LADIR, 2 rue H. Dunant, F-94320, Thiais, France. e-mail: [email protected] Alain Cousson Laboratoire Léon Brillouin (CEA-CNRS), CE Saclay, 91191 Gif-sur-Yvette, cedex, France. e-mail: [email protected] Matthias J. Gutmann ISIS Facility, Rutherford Appleton Laboratory, Chilton, Didcot, OX11 0QX, UK. e-mail: [email protected]

برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

A neutron diffraction study of macroscopically entangled proton states in the high temperature phase of the KHCO3 crystal at 340 K

We utilize single-crystal neutron diffraction to study the C2/m structure of potassium hydrogen carbonate (KHCO3) and macroscopic quantum entanglement above the phase transition at Tc = 318 K. Whereas split atom sites could be due to disorder, the diffraction pattern at 340 K evidences macroscopic proton states identical to those previously observed below Tc by F. Fillaux et al., (2006 J. Phys....

متن کامل

Where are Protons and Deuterons in KHpD1-pCO3? A Neutron Diffraction Study

The crystals of potassium hydrogen carbonate (KHCO3) and the KDCO3 analogue are isomorphous. They are composed of hydrogen or deuterium bonded centrosymmetric dimers (HCO−3 )2 or (DCO − 3 )2. The space group symmetry of KHpD1−pCO3 (p ≈ 0.75) determined with neutron diffraction is identical to those of KHCO3 and KDCO3. This is at variance with a random distribution of H and D nuclei. These cryst...

متن کامل

Proton transfer across hydrogen bonds: From reaction path to Schrödinger's cat

We review recent studies of the interconversion mechanism of OH O hydrogenbonded centrosymmetric dimers through proton transfer in the prototype crystals of potassium hydrogen carbonate (KHCO3) and benzoic acid (C6H5COOH). The point at issue is whether the proton distributions at various temperatures arise from classical statistical mixtures of tautomers or quantum mechanical superposition stat...

متن کامل

Nonlocal protons and deuterons oppose to disorder: A single-crystal neutron diffraction study of KH0.76D0.24CO3 and a theoretical framework

We show with neutron diffraction that a single-crystal of potassium hydrogen deuterium carbonate at room temperature, namely KH0.76D0.24CO3, is isomorphous with the KHCO3 and KDCO3 derivatives. Protons and deuterons are not disordered particles located at definite sites and Bragg peaks are best fitted with separate H and D sublattices. We propose a theoretical framework for nonlocal observables...

متن کامل

Investigation of strong force influence on behavior of nuclear energy levels in Calcium and Titanium isotopes: Based on quantum chaos theory

The atomic nucleus is a complex many-body system that consists of two types of fermion (neutron and proton). They are in the strong interaction. The statistical properties of energy levels and influence of strong force between these fermions are well described by random matrix theory. Resonance of energy levels depends on the Hamiltonian symmetry placed in one of the GOE, GUE and GSE ensembles ...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 2017