A bulk-doped semiconductor that is at least one of the following: a single
crystal, an elongated and bulk-doped semiconductor that, at any point
along its longitudinal axis, has a largest cross-sectional dimension less
than 500 nanometers, and a free-standing and bulk-doped semiconductor
with at least one portion having a smallest width of less than 500
nanometers. Such a semiconductor may comprise an interior core comprising
a first semiconductor; and an exterior shell comprising a different
material than the first semiconductor. Such a semiconductor may be
elongated and may have, at any point along a longitudinal section of such
a semiconductor, a ratio of the length of the section to a longest width
is greater than 4:1, or greater than 10:1, or greater than 100:1, or even
greater than 1000:1. At least one portion of such a semiconductor may a
smallest width of less than 200 nanometers, or less than 150 nanometers,
or less than 100 nanometers, or less than 80 nanometers, or less than 70
nanometers, or less than 60 nanometers, or less than 40 nanometers, or
less than 20 nanometers, or less than 10 nanometers, or even less than 5
nanometers. Such a semiconductor may be a single crystal and may be
free-standing. Such a semiconductor may be either lightly n-doped,
heavily n-doped, lightly p-doped or heavily p-doped. Such a semiconductor
may be doped during growth. Such a semiconductor may be part of a device,
which may include any of a variety of devices and combinations thereof,
and, a variety of assembling techniques may be used to fabricate devices
from such a semiconductor. Two or more of such a semiconductors,
including an array of such semiconductors, may be combined to form
devices, for example, to form a crossed p-n junction of a device. Such
devices at certain sizes may exhibit quantum confinement and other
quantum phenomena, and the wavelength of light emitted from one or more
of such semiconductors may be controlled by selecting a width of such
semiconductors. Such semiconductors and device made therefrom may be used
for a variety of applications.