Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Benjamin Heacock is active.

Publication


Featured researches published by Benjamin Heacock.


Physical Review D | 2016

Neutron limit on the strongly-coupled chameleon field

Ke Li; Muhammad Arif; David G. Cory; Robert Haun; Benjamin Heacock; Michael G. Huber; J. Nsofini; Dimitry A. Pushin; Parminder Saggu; Dusan Sarenac; Chandra Shahi; Vladimir Skavysh; W. M. Snow; A. R. Young

The physical origin of the dark energy that causes the accelerated expansion rate of the universe is one of the major open questions of cosmology. One set of theories postulates the existence of a self-interacting scalar field for dark energy coupling to matter. In the chameleon dark energy theory, this coupling induces a screening mechanism such that the field amplitude is nonzero in empty space but is greatly suppressed in regions of terrestrial matter density. However measurements performed under appropriate vacuum conditions can enable the chameleon field to appear in the apparatus, where it can be subjected to laboratory experiments. Here we report the most stringent upper bound on the free neutron-chameleon coupling in the strongly-coupled limit of the chameleon theory using neutron interferometric techniques. Our experiment sought the chameleon field through the relative phase shift it would induce along one of the neutron paths inside a perfect crystal neutron interferometer. The amplitude of the chameleon field was actively modulated by varying the millibar pressures inside a dual-chamber aluminum cell. We report a 95% confidence level upper bound on


european conference on cognitive ergonomics | 2012

Magnetic link optimization for wireless power transfer applications: Modeling and experimental validation for resonant tubular coils

Zeljko Pantic; Benjamin Heacock; Srdjan Lukic

This paper presents an analytical model of a copper-tube-based resonator coil used for wireless power transfer (WPT) applications. Some well-known techniques for calculating skin-effect-caused resistance, mutual inductance, self-inductance and self-capacitance are discussed in terms of their applicability for resonator modeling. Additionally, a new approach for proximity effect modeling is proposed, that results in a computationally efficient expression for proximity factor. Finally, all these elements are combined to derive a simple optimization function. In order to verify the derivations, the analytical outcomes are compared to FEM and experimental results for a planar spirally-wound, six-turn tubular coil.


Optics Express | 2016

Holography with a neutron interferometer

Dusan Sarenac; Michael G. Huber; Benjamin Heacock; Muhammad Arif; Charles W. Clark; David G. Cory; Chandra Shahi; Dimitry A. Pushin

We use a Mach-Zehnder interferometer to perform neutron holography of a spiral phase plate. The object beam passes through a spiral phase plate, acquiring the phase twist characteristic of orbital angular momentum states. The reference beam passes through a fused silica prism, acquiring a linear phase gradient. The resulting hologram is a fork dislocation image, which could be used to reconstruct neutron beams with various orbital angular momenta. This work paves the way for novel applications of neutron holography, diffraction and imaging.


Review of Scientific Instruments | 2018

Increased interference fringe visibility from the post-fabrication heat treatment of a perfect crystal silicon neutron interferometer

Benjamin Heacock; Muhammad Arif; David G. Cory; Thomas H. Gnaeupel-Herold; Robert Haun; Michael G. Huber; Michelle E. Jamer; J. Nsofini; Dimitry A. Pushin; Dusan Sarenac; Ivan Taminiau; A. R. Young

We find that annealing a previously chemically etched interferometer at 800 °C dramatically increased the interference fringe visibility from 23% to 90%. The Bragg plane misalignments were also measured before and after annealing using neutron rocking curves, showing that Bragg plane alignment was improved across the interferometer after annealing. This suggests that current interferometers with low fringe visibility may be salvageable and that annealing may become an important step in the fabrication process of future neutron interferometers, leading to less need for chemical etching and larger more exotic neutron interferometers.


Journal of Physics: Conference Series | 2015

A sensitive search for dark energy through chameleon scalar fields using neutron interferometry

W M Snow; Muhammad Arif; Benjamin Heacock; Michael G. Huber; K Li; Dimitry A. Pushin; V Skavysh; A. R. Young

The physical origin of the dark energy, which is postulated to cause the accelerated expansion rate of the universe, is one of the major open questions of cosmology. A large subset of theories postulate the existence of a scalar field with a nonlinear coupling to matter chosen so that the effective range and/or strength of the field is greatly suppressed unless the source is placed in vacuum. We describe a measurement using neutron interferometry which can place a stringent upper bound on chameleon fields proposed as a solution to the problem of the origin of dark energy of the universe in the regime with a strongly-nolinear coupling term. In combination with other experiments searching for exotic short-range forces and laser-based measurements, slow neutron experiments are capable of eliminating this and many similar types of scalar-field-based dark energy models by laboratory experiments.


Physical Review A | 2017

Neutron interferometer crystallographic imperfections and gravitationally induced quantum interference measurements

Benjamin Heacock; Muhammad Arif; Robert Haun; Michael G. Huber; Dimitry A. Pushin; A. R. Young


Physical Review Letters | 2018

Three Phase-Grating Moiré Neutron Interferometer for Large Interferometer Area Applications

Dusan Sarenac; Dimitry A. Pushin; Michael G. Huber; Daniel S. Hussey; Haixing Miao; Muhammad Arif; David G. Cory; Alexander D. Cronin; Benjamin Heacock; David L. Jacobson; Jacob M. LaManna; Han Wen


Bulletin of the American Physical Society | 2018

Increased interference fringe visibility from the post fabrication heat treatment of a perfect crystal silicon neutron interferometer

Michael G. Huber; Benjamin Heacock; A. R. Young; Muhammad Arif; David G. Cory; Dimitry A. Pushin; Robert Haun; Ivar Taminiau; Dusan Sarenac; J. Nsofini; M E Jamer; Thomas H. Gnaeupel-Herold


Bulletin of the American Physical Society | 2018

Construction of a Thick-Crystal Neutron Interferometer Using New Fabrication Techniques

Benjamin Heacock; Ar Young; Muhammad Arif; Michael G. Huber; Me Jamer; Robert Haun; K Hirota; M Kitaguchi; H Shimizu; T Yamamoto; T Hosobata; Y Yamagata; Dmitry A. Pushin; I Taminiau


Bulletin of the American Physical Society | 2017

Fork Dislocation Hologram Created Using Neutron Interferometry

Michael G. Huber; Dusan Sarenac; Benjamin Heacock; Muhammad Arif; Charles W. Clark; David G. Cory; Chandra Shahi; Dmitry A. Pushin

Collaboration


Dive into the Benjamin Heacock's collaboration.

Top Co-Authors

Avatar

Muhammad Arif

National Institute of Standards and Technology

View shared research outputs
Top Co-Authors

Avatar

Michael G. Huber

National Institute of Standards and Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

A. R. Young

North Carolina State University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

J. Nsofini

University of Waterloo

View shared research outputs
Top Co-Authors

Avatar

Dmitry A. Pushin

Massachusetts Institute of Technology

View shared research outputs
Researchain Logo
Decentralizing Knowledge