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  <p><b>
    <a href="https://inspirehep.net/literature/2136136">
      Time-marching based quantum solvers for time-dependent linear differential equations
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/1961512">Di Fang</a> (<a href="https://inspirehep.net/institutions/903300">UC, Berkeley, Math. Dept.</a> and <a href="https://inspirehep.net/institutions/1189913">UC, Berkeley (main)</a>), <a href="https://inspirehep.net/authors/1496674">Lin Lin</a> (<a href="https://inspirehep.net/institutions/903300">UC, Berkeley, Math. Dept.</a> and <a href="https://inspirehep.net/institutions/1189711">LBNL, Berkeley</a> and <a href="https://inspirehep.net/institutions/1189913">UC, Berkeley (main)</a>), <a href="https://inspirehep.net/authors/1929389">Yu Tong</a> (<a href="https://inspirehep.net/institutions/903300">UC, Berkeley, Math. Dept.</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2208.06941">
      2208.06941
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.22331/q-2023-03-20-955">
      10.22331/q-2023-03-20-955
    </a>
      </p>
  <p>
    Published in:<span>
      Quantum 7 (2023),
      955</span>,<span>
      Quantum 7 (2023),
      955</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/2168090">
      Doubling the order of approximation via the randomized product formula
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/2168091">Chien Hung Cho</a> (<a href="https://inspirehep.net/institutions/904661">Taiwan, Natl. Taiwan U.</a> and <a href="https://inspirehep.net/institutions/912072">Unlisted, TW</a>), <a href="https://inspirehep.net/authors/1942662">Dominic W. Berry</a> (<a href="https://inspirehep.net/institutions/903765">Macquarie U.</a>), <a href="https://inspirehep.net/authors/1973377">Min-Hsiu Hsieh</a> (<a href="https://inspirehep.net/institutions/912072">Unlisted, TW</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2210.11281">
      2210.11281
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.1103/PhysRevA.109.062431">
      10.1103/PhysRevA.109.062431
    </a>(publication)
      </p>
  <p>
    Published in:<span>
      Phys.Rev.A 109 (2024) 6,
      062431</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/2703159">
      Randomized term grouping over physical law on digital quantum simulation
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/1987137">Songqinghao Yang</a> (<a href="https://inspirehep.net/institutions/913314">Cambridge U. (main)</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2309.14378">
      2309.14378
    </a>[quant-ph]</p>
  
  
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/1964768">
      Hamiltonian Simulation with Random Inputs
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/1889050">Qi Zhao</a> (<a href="https://inspirehep.net/institutions/912450">Joint Quantum Inst., College Park</a>), <a href="https://inspirehep.net/authors/1985607">You Zhou</a> (<a href="https://inspirehep.net/institutions/911953">Nanyang Technol. U.</a>), <a href="https://inspirehep.net/authors/1059168">Alexander F. Shaw</a> (<a href="https://inspirehep.net/institutions/912450">Joint Quantum Inst., College Park</a>), <a href="https://inspirehep.net/authors/1956881">Tongyang Li</a> (<a href="https://inspirehep.net/institutions/1238006">Peking U., Beijing</a> and <a href="https://inspirehep.net/institutions/1237813">MIT, Cambridge, CTP</a>), <a href="https://inspirehep.net/authors/1048906">Andrew M. Childs</a> (<a href="https://inspirehep.net/institutions/912450">Joint Quantum Inst., College Park</a> and <a href="https://inspirehep.net/institutions/912511">Maryland U., College Park</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2111.04773">
      2111.04773
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.1103/PhysRevLett.129.270502">
      10.1103/PhysRevLett.129.270502
    </a>(publication)
      </p>
  <p>
    Published in:<span>
      Phys.Rev.Lett. 129 (2022) 27,
      270502</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/3142600">
      When is randomization advantageous in quantum simulation?
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/2580384">Francesco Paganelli</a> (<a href="https://inspirehep.net/institutions/902725">CERN</a> and <a href="https://inspirehep.net/institutions/902958">Leiden U.</a>), <a href="https://inspirehep.net/authors/1990556">Michele Grossi</a> (<a href="https://inspirehep.net/institutions/902725">CERN</a>), <a href="https://inspirehep.net/authors/1029864">Andrea Giachero</a> (<a href="https://inspirehep.net/institutions/909939">INFN, Milan Bicocca</a> and <a href="https://inspirehep.net/institutions/907960">Milan Bicocca U.</a> and <a href="https://inspirehep.net/institutions/912187">Unlisted, IT</a>), <a href="https://inspirehep.net/authors/995301">Thomas E. O'Brien</a> (<a href="https://inspirehep.net/institutions/902958">Leiden U.</a> and <a href="https://inspirehep.net/institutions/912239">Unlisted, DE</a>), <a href="https://inspirehep.net/authors/2049082">Oriel Kiss</a> (<a href="https://inspirehep.net/institutions/902725">CERN</a> and <a href="https://inspirehep.net/institutions/912239">Unlisted, DE</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2604.07448">
      2604.07448
    </a>[quant-ph]</p>
  
  
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/1964700">
      Average-Case Speedup for Product Formulas
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/1779178">Chi-Fang Chen</a> (<a href="https://inspirehep.net/institutions/1237812">Caltech, Pasadena (main)</a>), <a href="https://inspirehep.net/authors/1964704">Fernando G.S. L. Brandão</a> (<a href="https://inspirehep.net/institutions/1237812">Caltech, Pasadena (main)</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2111.05324">
      2111.05324
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.1007/s00220-023-04912-5">
      10.1007/s00220-023-04912-5
    </a>
      </p>
  <p>
    Published in:<span>
      Commun.Math.Phys. 405 (2024) 2,
      32</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/1950125">
      Randomizing multi-product formulas for Hamiltonian simulation
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/1950128">Paul K. Faehrmann</a> (<a href="https://inspirehep.net/institutions/1080831">Freie U., Berlin (main)</a>), <a href="https://inspirehep.net/authors/1950129">Mark Steudtner</a> (<a href="https://inspirehep.net/institutions/1080831">Freie U., Berlin (main)</a>), <a href="https://inspirehep.net/authors/1895963">Richard Kueng</a> (<a href="https://inspirehep.net/institutions/904368">Linz U.</a>), <a href="https://inspirehep.net/authors/1950130">Maria Kieferova</a> (<a href="https://inspirehep.net/institutions/906143">Sydney, U. Technol.</a>), <a href="https://inspirehep.net/authors/1069647">Jens Eisert</a> (<a href="https://inspirehep.net/institutions/1080831">Freie U., Berlin (main)</a> and <a href="https://inspirehep.net/institutions/911753">Helmholtz-Zentrum, Berlin</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2101.07808">
      2101.07808
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.22331/q-2022-09-19-806">
      10.22331/q-2022-09-19-806
    </a>
      </p>
  <p>
    Published in:<span>
      Quantum 6 (2022),
      806</span>,<span>
      Quantum 6 (2022),
      806</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/2095995">
      Composite Quantum Simulations
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/2095998">Matthew Hagan</a> (<a href="https://inspirehep.net/institutions/903282">Toronto U.</a>), <a href="https://inspirehep.net/authors/1918812">Nathan Wiebe</a> (<a href="https://inspirehep.net/institutions/903282">Toronto U.</a> and <a href="https://inspirehep.net/institutions/903918">PNL, Richland</a> and <a href="https://inspirehep.net/institutions/907948">Canadian Inst. Advanced Res.</a>)</p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2206.06409">
      2206.06409
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.22331/q-2023-11-14-1181">
      10.22331/q-2023-11-14-1181
    </a>
      </p>
  <p>
    Published in:<span>
      Quantum 7 (2023),
      1181</span>,<span>
      Quantum 7 (2023),
      1181</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/3059841">
      Time-dependent unbounded Hamiltonian simulation with vector norm scaling
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/2138234">Dong An</a>, <a href="https://inspirehep.net/authors/1961512">Di Fang</a>, <a href="https://inspirehep.net/authors/1496674">Lin Lin</a></p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2012.13105">
      2012.13105
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.22331/q-2021-05-26-459">
      10.22331/q-2021-05-26-459
    </a>(publication)
      </p>
  <p>
    Published in:<span>
      Quantum 5 (2021),
      459</span></p>
  <br>
  <p><b>
    <a href="https://inspirehep.net/literature/3086802">
      Higher-order Zeno sequences
    </a>
  </b></p>
  
    <p><a href="https://inspirehep.net/authors/2789310">Kasra Rajabzadeh Dizaji</a>, <a href="https://inspirehep.net/authors/2031328">Leeseok Kim</a>, <a href="https://inspirehep.net/authors/2010348">Milad Marvian</a>, <a href="https://inspirehep.net/authors/2386528">Christian Arenz</a></p>
  
  <p>
      e-Print:
          <a href="https://arxiv.org/abs/2511.20792">
      2511.20792
    </a>[quant-ph]</p>
  <p>
        DOI:
        <a href="https://doi.org/10.1103/glcd-gm3v">
      10.1103/glcd-gm3v
    </a>(publication)
      </p>
  <p>
    Published in:<span>
      Phys.Rev.Res. 8 (2026) 2,
      023051</span></p>
  <br>
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