We develop an action formulation of stochastic dynamics in the Hilbert space. By generalizing the Wiener process into 1+3-dimensional spacetime, we define a Lorentz-invariant random field. By coupling the random to quantum fields, we obtain a random-number action which has the statistical spacetime translation and Lorentz symmetries. The canonical quantization of the theory results in a Lorentz-invariant equation of motion for the state vector or density matrix. We derive the path integral formula of $S$-matrix and the diagrammatic rules for both the stochastic free field theory and stochastic $\phi^4$-theory. The Lorentz invariance of the random $S$-matrix is strictly proved. We then develop a diagrammatic technique for calculating the den...
This paper introduces several new classes of mathematical structures that have close connections wit...
Blanchard P, POTTHOFF J, SENEOR R. ON STOCHASTIC QUANTIZATION OF EUCLIDEAN QUANTUM-FIELD THEORIES. S...
University of Minnesota M.S. thesis.JSeptember 2016. Major: Physics. Advisor: Vitaly Vanchurin. 1 co...
This paper introduces an exact correspondence between a general class of stochastic systems and quan...
Well suited as a textbook in the emerging field of stochastic limit, which is a new mathematical tec...
We explore the mathematical relation between stochastic quantization (SQ) and the holographic Wilson...
In this thesis new foundations for the stochastic process are formulated which lead to the conventio...
We treat a relativistically moving particle interacting with a quantum field from an open system vie...
We discuss the renormalizability of stochastically quantized φ4 theory in four dimensions using...
We study the classical motion of a particle subject to a stochastic force. We then present a perturb...
We embed Nelson’s theory of stochastic quantization in the Schwartz-Meyer second order geometry fram...
We consider two strategies for stochastic quantization. With the first, one posits an additional tim...
A mechanism describing state reduction dynamics in relativistic quan-tum field theory is outlined. T...
We propose a stochastic method for solving Schwinger-Dyson equations in large-N quantum field theori...
In the context of unitary evolution of a generic quantum system interrupted at random times with non...
This paper introduces several new classes of mathematical structures that have close connections wit...
Blanchard P, POTTHOFF J, SENEOR R. ON STOCHASTIC QUANTIZATION OF EUCLIDEAN QUANTUM-FIELD THEORIES. S...
University of Minnesota M.S. thesis.JSeptember 2016. Major: Physics. Advisor: Vitaly Vanchurin. 1 co...
This paper introduces an exact correspondence between a general class of stochastic systems and quan...
Well suited as a textbook in the emerging field of stochastic limit, which is a new mathematical tec...
We explore the mathematical relation between stochastic quantization (SQ) and the holographic Wilson...
In this thesis new foundations for the stochastic process are formulated which lead to the conventio...
We treat a relativistically moving particle interacting with a quantum field from an open system vie...
We discuss the renormalizability of stochastically quantized φ4 theory in four dimensions using...
We study the classical motion of a particle subject to a stochastic force. We then present a perturb...
We embed Nelson’s theory of stochastic quantization in the Schwartz-Meyer second order geometry fram...
We consider two strategies for stochastic quantization. With the first, one posits an additional tim...
A mechanism describing state reduction dynamics in relativistic quan-tum field theory is outlined. T...
We propose a stochastic method for solving Schwinger-Dyson equations in large-N quantum field theori...
In the context of unitary evolution of a generic quantum system interrupted at random times with non...
This paper introduces several new classes of mathematical structures that have close connections wit...
Blanchard P, POTTHOFF J, SENEOR R. ON STOCHASTIC QUANTIZATION OF EUCLIDEAN QUANTUM-FIELD THEORIES. S...
University of Minnesota M.S. thesis.JSeptember 2016. Major: Physics. Advisor: Vitaly Vanchurin. 1 co...