Particle detection and tracking with DNA
arXiv:2105.11949 · doi:10.1140/epjc/s10052-022-10264-6
Abstract
We present the first proof-of-concept simulations of detectors using biomaterials to detect particle interactions. The essential idea behind a "DNA detector" involves the attachment of a forest of precisely-sequenced single or double-stranded nucleic acids from a thin holding layer made of a high-density material. Incoming particles break a series of strands along a roughly co-linear chain of interaction sites and the severed segments then fall to a collection area. Since the sequences of base pairs in nucleic acid molecules can be precisely amplified and measured using polymerase chain reaction (PCR), the original spatial position of each broken strand inside the detector can be reconstructed with nm precision. Motivated by the potential use as a low-energy directional particle tracker, we perform the first Monte Carlo simulations of particle interactions inside a DNA detector. We compare the track topology as a function of incoming direction, energy, and particle type for a range of ionising particles. While particle identification and energy reconstruction might be challenging without a significant scale-up, the excellent potential angular and spatial resolution ( axial resolution for a keV-scale particles and nm-scale track segments) are clear advantages of this concept. We conclude that a DNA detector could be a cost-effective, portable, and powerful new particle detection technology. We outline the outstanding experimental challenges, and suggest directions for future laboratory tests.
17+3 pages, 9+3 figures
References in corpus (22)
- Light Dark Matter in Superfluid Helium: Detection with Multi-excitation Production
- SiC Detectors for Sub-GeV Dark Matter
- Readout technologies for directional WIMP Dark Matter detection
- Sub-GeV Dark Matter Detection with Electron Recoils in Carbon Nanotubes
- Directional Dark Matter Detection Beyond the Neutrino Bound
- Markov Chain Monte Carlo analysis to constrain Dark Matter properties with directional detection
- Directional recoil detection
- The median recoil direction as a WIMP directional detection signal
- Directional detection of dark matter streams
- Probing the Local Velocity Distribution of WIMP Dark Matter with Directional Detectors
- New directional signatures from the non-relativistic effective field theory of dark matter
- Exploring the hidden interior of the Earth with directional neutrino measurements
- Cosmogenic activation of materials
- Directional detection of dark matter with diamond
- Ultra-Heavy Dark Matter Search with Electron Microscopy of Geological Quartz
- Consequences of statistical sense determination for WIMP directional detection
- Reconstructing the three-dimensional local dark matter velocity distribution
- Time-integrated directional detection of dark matter
- CYGNO: a gaseous TPC with optical readout for dark matter directional search
- New class of biological detectors for WIMPs
- Comparing readout strategies to directly detect dark matter
- Discovering supernova-produced dark matter with directional detectors
Cited by in corpus (6)
- Review on dark matter searches
- Revisiting the Fermionic Dark Matter Absorption on Electron Target
- Dark Matter Candidates and Searches
- CYGS: Detecting solar neutrinos with directional gas time projection chambers
- Searching for beyond-Standard-Model solar neutrino interactions using directional detectors
- The potential of directional neutrino detection to observe neutrino spin oscillations