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R. Wegner

Publications and source records attributed to R. Wegner.

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Completing the picture for the smallest eigenvalue of real Wishart matrices

Rectangular real $N \times (N + ν)$ matrices $W$ with a Gaussian distribution appear very frequently in data analysis, condensed matter physics and quantum field theory. A central question concerns the correlations encoded in the spectral statistics of $WW^T$. The extreme eigenvalues of $W W^T$ are of particular interest. We explicitly compute the distribution and the gap probability of the smallest non-zero eigenvalue in this ensemble, both for arbitrary fixed $N$ and $ν$, and in the universal large $N$ limit with $ν$ fixed. We uncover an integrable Pfaffian structure valid for all even values of $ν\geq 0$. This extends previous results for odd $ν$ at infinite $N$ and recursive results for finite $N$ and for all $ν$. Our mathematical results include the computation of expectation values of half integer powers of characteristic polynomials.

math-ph

High-power test results of a 3 GHz single-cell cavity

Compact, reliable and little consuming accelerators are required for the treatment of tumours with ions. TERA proposes the "cyclinac", composed of a high-frequency, fast-cycling linac which boosts the energy of the particles previously accelerated in a cyclotron. The dimensions of the linac can be reduced if high gradients are used. TERA initiated a high-gradient test program to understand the operational limit of such structures. The program foresees the design, prototyping and high-power test of several high-gradient structures operating at 3 and 5.7 GHz. The high-power tests of the 3 GHz single-cell cavity were completed in Winter 2012. The maximum BDR threshold measured for Emax of 170 MV/m and RF pulses of 2.5 μs was 3 x 10-6 bpp/m.

physics.acc-ph