/** * Returns metric tensor with specified indices. * * @param index1 first index * @param index2 second index * @return metric tensor with specified indices * @throws IllegalArgumentException if indices have different states * @throws IllegalArgumentException if indices have different types * @throws IllegalArgumentException if indices have non metric types */ public SimpleTensor CreateMetric(uint index1, uint index2) { byte type; if ((type = IndicesUtils.getType(index1)) != IndicesUtils.getType(index2) || !IndicesUtils.haveEqualStates(index1, index2) || !metricTypes.Get(type)) { throw new ArgumentException("Not metric indices."); } var indices = IndicesFactory.createSimple(null, index1, index2); var nd = nameManager.mapNameDescriptor(nameManager.GetMetricName(), new StructureOfIndices(indices)); var name = nd.Id; return(Tensor.SimpleTensor(name, indices)); }
/** * Returns Kronecker tensor with specified upper and lower indices. * * @param index1 first index * @param index2 second index * @return Kronecker tensor with specified upper and lower indices * @throws IllegalArgumentException if indices have same states * @throws IllegalArgumentException if indices have different types */ public SimpleTensor CreateKronecker(uint index1, uint index2) { byte type; if ((type = IndicesUtils.getType(index1)) != IndicesUtils.getType(index2) || IndicesUtils.getRawStateInt((uint)index1) == IndicesUtils.getRawStateInt((uint)index2)) { throw new ArgumentException("This is not kronecker indices!"); } if (!isMetric(type) && IndicesUtils.getState(index2)) { var t = index1; index1 = index2; index2 = t; } ISimpleIndices indices = IndicesFactory.createSimple(null, index1, index2); var nd = nameManager.mapNameDescriptor(nameManager.getKroneckerName(), new StructureOfIndices(indices)); var name = nd.Id; return(Tensor.SimpleTensor(name, indices)); }