activity
19951998
most citedThe anapole moment and nucleon weak interactions

123 citations · 175 across the 4 of their papers we have counts for

collaborators

7 papers

physics.atom-ph1998★ 35 cited

Enhancement factor for the electron electric dipole moment in francium and gold atoms

T. M. R. Byrnes, V. A. Dzuba, V. V. Flambaum +1

If electrons had an electric dipole moment (EDM) they would induce EDMs of atoms. The ratio of the atomic EDM to the electron EDM for a particular atom is called the enhancement fa…

hep-ph1998★ 1 cited

Dyons as a source of CP and time invariance violation: electric dipole moments and K-meson decays

D. W. Murray, V. V. Flambaum

We consider a mechanism by which dyons (electrically charged magnetic monopoles) can produce both a T- and P-odd (i.e. time reversal invariance and parity violating) mixed polariza…

nucl-th1997★ 16 cited

Time invariance violating nuclear electric octupole moments

V. V. Flambaum, D. W. Murray, S. R. Orton

The existence of a nuclear electric octupole moment (EOM) requires both parity and time invariance violation. The EOMs of odd nuclei that are induced by a particular T- and P-o…

nucl-th1997★ 123 cited

The anapole moment and nucleon weak interactions

V. V. Flambaum, D. W. Murray

From the recent measurement of parity nonconservation (PNC) in the Cs atom we have extracted the constant of the nuclear spin dependent electron-nucleon PNC interaction, $κ= 0.442…

atom-ph1996

Limits on the monopole magnetic field from measurements of the electric dipole moments of atoms, molecules and the neutron

V. V. Flambaum, D. W. Murray

A radial magnetic field can induce a time invariance violating electric dipole moment (EDM) in quantum systems. The EDMs of the Tl, Cs, Xe and Hg atoms and the neutron that are pro…

cond-mat1996

Quantum Monte Carlo study of the one-dimensional Holstein model of spinless fermions

Ross H. McKenzie, C. J. Hamer, D. W. Murray

The Holstein model of spinless fermions interacting with dispersionless phonons in one dimension is studied by a Green's function Monte Carlo technique. The ground state energy, fi…