We obtain all "regularization parameters" (RPs) needed for calculating the gravitational and electromagnetic self-forces for an arbitrary geodesic orbit around a Schwarzschild black hole. These RP values are required for implementing the previously introduced mode-sum method, which allows a practical calculation of the self-force by summing over contributions from individual multipole modes of the particle's field. In the gravitational case, we provide here full details of the analytic method and results briefly reported in a recent Letter [Phys. Rev. Lett. 88, 091101 (2002)]. In the electromagnetic case, the RPs are obtained here for the first time
We formulate a new analytical method for regularizing the self-force acting on a particle of small m...
We present a practical method for calculating the local gravitational self-force (often called "radi...
We present a practical method for calculating the local gravitational self-force (often called ``rad...
We obtain all ''''regularization parameters'' (RP) needed for calculating the gravitational and elec...
We obtain all ''''regularization parameters'' (RP) needed for calculating the gravitational and elec...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We obtain all ''''regularization parameters'' (RP) needed for calculating the gravitational and elec...
We present a practical method for calculating the local gravitational self-force (often called "radi...
We present a practical method for calculating the local gravitational self-force (often called “radi...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We propose a practical scheme for calculating the local gravitational self-force experienced by a te...
We propose a practical scheme for calculating the local gravitational self-force experienced by a te...
We propose a practical scheme for calculating the local gravitational self-force experienced by a te...
We formulate a new analytical method for regularizing the self-force acting on a particle of small m...
We present a practical method for calculating the local gravitational self-force (often called "radi...
We present a practical method for calculating the local gravitational self-force (often called ``rad...
We obtain all ''''regularization parameters'' (RP) needed for calculating the gravitational and elec...
We obtain all ''''regularization parameters'' (RP) needed for calculating the gravitational and elec...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We obtain all ''''regularization parameters'' (RP) needed for calculating the gravitational and elec...
We present a practical method for calculating the local gravitational self-force (often called "radi...
We present a practical method for calculating the local gravitational self-force (often called “radi...
We derive the explicit values of all regularization parameters (RP) for a scalar particle in an arbi...
We propose a practical scheme for calculating the local gravitational self-force experienced by a te...
We propose a practical scheme for calculating the local gravitational self-force experienced by a te...
We propose a practical scheme for calculating the local gravitational self-force experienced by a te...
We formulate a new analytical method for regularizing the self-force acting on a particle of small m...
We present a practical method for calculating the local gravitational self-force (often called "radi...
We present a practical method for calculating the local gravitational self-force (often called ``rad...